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Paper Citation Record · LEDGER

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems

As of 15 August 2026, this Paper Citation Record lists 70 of 70 outbound references and 0 inbound Pith citation observations for arXiv:2608.00990.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2608.00990 v1

Coverage vector

measured 70 of 70 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-06T00:41:24.689394Z

measured 70 of 70 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-15T06:32:42.880941+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Source: cited_works

Reference resolution

70 of 70 outbound references displayed

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External citation measurements

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Outbound references

Observation 7bf31943-05a3-418b-91db-608ded3584e2 · outbound

This paper cites How to Build a Quantum Supercomputer: Scaling from Hundreds to Millions of Qubits.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems How to Build a Quantum Supercomputer: Scaling from Hundreds to Millions of Qubits

Reference 1

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Observation f37b2500-1164-4f3a-a731-69385660a877 · outbound

This paper cites Enabling technolo- gies for scalable superconducting quantum computing.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Enabling technolo- gies for scalable superconducting quantum computing

Reference 2

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Observation 2fa23c3c-c249-428c-b947-1b99ec53bdcc · outbound

This paper cites Abanin, Laleh Aghababaie-Beni, Igor Aleiner, Trond I.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Abanin, Laleh Aghababaie-Beni, Igor Aleiner, Trond I

Reference 3

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Observation a218137b-4bc9-4861-afd0-3886d789243f · outbound

This paper cites Ibm technology roadmap.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Ibm technology roadmap

Reference 4

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Observation 6e8b12b1-00f9-4626-9039-6cf1053af508 · outbound

This paper cites Roadmap | Google Quantum AI — quantumai.google.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Roadmap | Google Quantum AI — quantumai.google

Reference 5

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Observation 4be690c2-84d1-45de-b38a-88de61554d52 · outbound

This paper cites Fujitsu starts official development of plus-10,000 qubit su- perconducting quantum computer targeting completion in 2030.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fujitsu starts official development of plus-10,000 qubit su- perconducting quantum computer targeting completion in 2030

Reference 6

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Observation 8c33f343-3f9e-4a4e-a508-6e2f22092bd9 · outbound

This paper cites QuantWare announces scaling breakthrough with VIO- 40K™, delivering 10,000 qubit Quantum Processors for the first time | Quantware — quantware.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems QuantWare announces scaling breakthrough with VIO- 40K™, delivering 10,000 qubit Quantum Processors for the first time | Quantware — quantware.com

Reference 7

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Observation 6d057980-5bf9-4941-b414-e55b5485c130 · outbound

This paper cites Engineering cryogenic setups for 100-qubit scale superconduct- ing circuit systems.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Engineering cryogenic setups for 100-qubit scale superconduct- ing circuit systems

Reference 8

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Observation 9fb204d6-e436-4580-ac40-3f0bb43a1af6 · outbound

This paper cites Scaling up superconducting quantum computers with cryogenic rf-photonics.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Scaling up superconducting quantum computers with cryogenic rf-photonics

Reference 9

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Observation bb676c66-190d-43f9-8048-3dc0bbfd642a · outbound

This paper cites Qisim: Architecting 10+ k qubit qc interfaces toward quantum supremacy.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Qisim: Architecting 10+ k qubit qc interfaces toward quantum supremacy

Reference 10

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Observation 71c78a86-f23e-4f55-a4a7-df5952f5ce2a · outbound

This paper cites Cryogenic thermal modeling of microwave high density signaling.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Cryogenic thermal modeling of microwave high density signaling

Reference 11

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Observation 297385d4-b3c6-4a2b-b1ca-bbfb280e5a5b · outbound

This paper cites Flexible cryogenic i/o.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Flexible cryogenic i/o

Reference 12

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Observation 6fdaa208-5ab9-4869-8a39-98aa72352be5 · outbound

This paper cites High-Density Wiring — bluefors.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems High-Density Wiring — bluefors.com

Reference 13

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Observation 12863675-35dc-46de-82fb-d6af43010133 · outbound

This paper cites KIDE Cryogenic Platform — bluefors.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems KIDE Cryogenic Platform — bluefors.com

Reference 14

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Observation 2352ab8d-03e1-477c-ba41-39fd69f226e6 · outbound

This paper cites A large millikelvin platform at fermilab for quantum computing applications.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems A large millikelvin platform at fermilab for quantum computing applications

Reference 15

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Observation 1ee4aa8d-ccc5-45df-b686-25634b2c92bb · outbound

This paper cites An update on the colossus mk platform at fermilab.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems An update on the colossus mk platform at fermilab

Reference 16

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Observation bc2acd70-0457-48fc-a374-243c759ef1ec · outbound

This paper cites Thermal Capacity Mapping of Cryogenic Platforms for Quantum Computers.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Thermal Capacity Mapping of Cryogenic Platforms for Quantum Computers

Reference 17

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Observation 17bfb7fc-7e3e-4402-98da-aa877356d44c · outbound

This paper cites Cryogenic Catalogue 2022.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Cryogenic Catalogue 2022

Reference 18

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Observation 3b98214f-92c7-454b-a708-b65b2b80d31b · outbound

This paper cites Effect of neutron irradiation on the density of low-energy excitations in vitreous silica.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Effect of neutron irradiation on the density of low-energy excitations in vitreous silica

Reference 19

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Observation ad0e791b-c45d-4bbc-ba03-4721959e85e2 · outbound

This paper cites Equivalence of flexible stripline and coaxial cables for superconducting qubit control and readout pulses.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Equivalence of flexible stripline and coaxial cables for superconducting qubit control and readout pulses

Reference 20

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Observation 0b4ad147-24c4-4572-ba4f-2b05e2563d99 · outbound

This paper cites Thermalization of a flexible microwave stripline measured by a superconducting qubit.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Thermalization of a flexible microwave stripline measured by a superconducting qubit

Reference 21

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Observation 2b7f5683-7fca-4ca0-acb8-19e54bac30b0 · outbound

This paper cites Control and readout of a superconducting qubit using a photonic link.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Control and readout of a superconducting qubit using a photonic link

Reference 22

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Observation bd7815f5-63dd-47a0-be13-42e4aa087518 · outbound

This paper cites LNF-NANO9M - Low Noise Factory — lownoisefac- tory.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems LNF-NANO9M - Low Noise Factory — lownoisefac- tory.com

Reference 23

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Observation a4596050-8de5-4961-9803-eb5adacbd332 · outbound

This paper cites Development of a cryogenic system for the characterization of advanced cmos technologies down to 350 mk.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Development of a cryogenic system for the characterization of advanced cmos technologies down to 350 mk

Reference 24

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Observation f6976cc0-98a7-4751-b2fd-ffbd7072f7df · outbound

This paper cites Ybco-on-kapton: Material for high-density quantum computer interconnects with ultra-low thermal loss.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Ybco-on-kapton: Material for high-density quantum computer interconnects with ultra-low thermal loss

Reference 25

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Observation 3630427f-9259-44e0-a45c-cb0c1e87d724 · outbound

This paper cites Cryogenic material properties OFHC Copper — trc.nist.gov.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Cryogenic material properties OFHC Copper — trc.nist.gov

Reference 26

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Observation 3a3f980b-b729-486f-8024-150cefd9f491 · outbound

This paper cites Cryogenic Properties of Copper — copper.org.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Cryogenic Properties of Copper — copper.org

Reference 27

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Observation 3ce79f03-c2ac-4fc1-b4eb-712dc8625f49 · outbound

This paper cites twire.co.jp.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems twire.co.jp

Reference 28

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Observation 43f88123-b6a2-40f8-ba22-15bf8efd645b · outbound

This paper cites Characterization of the pressure coefficient of manganin and temperature evolution of pressure in piston-cylinder cells.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Characterization of the pressure coefficient of manganin and temperature evolution of pressure in piston-cylinder cells

Reference 29

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Observation d58473e1-b571-40c3-af07-19022d5abb03 · outbound

This paper cites Cryogenic wire — lakeshore.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Cryogenic wire — lakeshore.com

Reference 30

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Observation 64944572-e748-438e-833b-984bd7609f14 · outbound

This paper cites Microwaves in quantum computing.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Microwaves in quantum computing

Reference 31

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Observation 24ad350e-f685-4f60-9caf-6ac856ceab01 · outbound

This paper cites Calibration of a cross-resonance two-qubit gate between directly coupled transmons.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Calibration of a cross-resonance two-qubit gate between directly coupled transmons

Reference 32

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Observation 0c6610b8-5441-4ea6-ab69-fc0450854afe · outbound

This paper cites First-principles analysis of cross-resonance gate operation.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems First-principles analysis of cross-resonance gate operation

Reference 33

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Observation dc06a338-a5ed-401f-8bbc-fb716796a8c5 · outbound

This paper cites Quantum supremacy using a programmable super- conducting processor.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Quantum supremacy using a programmable super- conducting processor

Reference 34

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raw_fallback, observed 2026-08-06T00:41:30.109215Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.072051Z digest=sha256:0b5caad16602d923f5084f3555febed95d152a21858994d0f8b4d071c2678b03

Observation 0057a5d9-4e54-40d5-8480-a2b4ccf26577 · outbound

This paper cites LNF-LNC4_8G - Low Noise Factory — lownoise- factory.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems LNF-LNC4_8G - Low Noise Factory — lownoise- factory.com

Reference 35

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.962713Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.129974Z digest=sha256:42790426613f095181699f843f3cb9262ac44f9568a08ac42e87f5c7514bfaf4

Observation f810294e-248d-4edf-9ca1-3f7a4a1ebc82 · outbound

This paper cites LNF-LNC4_8G - Low Noise Factory — lownoisefac- tory.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems LNF-LNC4_8G - Low Noise Factory — lownoisefac- tory.com

Reference 36

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.803673Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.224955Z digest=sha256:504f71b40299605e8cb94783909f70c4de0f31238a13cac919e6f4c7468d667f

Observation febd08a2-d59d-470b-a314-1c785ebda29b · outbound

This paper cites A 300-µw cryogenic hemt lna for quantum computing.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems A 300-µw cryogenic hemt lna for quantum computing

Reference 37

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.689307Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.297033Z digest=sha256:d8a9fee8ba2a1c638f848c164115e3bc8cfbf212092b69a13ba4c753ca69a56e

Observation 49d05ab5-74ec-4648-b308-9fd1901a2c2d · outbound

This paper cites Sub-mw cryogenic inp hemt lna for qubit readout.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Sub-mw cryogenic inp hemt lna for qubit readout

Reference 38

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.516616Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.358923Z digest=sha256:db64ede3c6902521207dffcf21afe9b14a31bda33e5eb6ad3f31d443ecd788c9

Observation 32f9ac20-06be-423d-9738-1093c896a835 · outbound

This paper cites Characterization of a low- noise superconductor–insulator–superconductor-based microwave ampli- fier with local oscillator phase-adjusting architecture.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Characterization of a low- noise superconductor–insulator–superconductor-based microwave ampli- fier with local oscillator phase-adjusting architecture

Reference 39

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.339680Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.449760Z digest=sha256:e0dfa9218c84d887acc6290b6b55b71dcb5f8ef330b0d655d8d20cd2e652e4e0

Observation 2cc7b978-7767-4f6c-a630-47815fdef591 · outbound

This paper cites Fabrication and evaluation of waveguide josephson array oscillators at millimeter- wave lengths for sis mixer-based amplifiers.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fabrication and evaluation of waveguide josephson array oscillators at millimeter- wave lengths for sis mixer-based amplifiers

Reference 40

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.196659Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.514686Z digest=sha256:35ae0600f2944ba14c2164c61c45174233b3dab5d900e635d5a56a839aa506f8

Observation 05923e34-4f00-4228-bb70-e47da9caa660 · outbound

This paper cites A near–quantum-limited josephson traveling-wave parametric amplifier.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems A near–quantum-limited josephson traveling-wave parametric amplifier

Reference 41

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:29.065847Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.570074Z digest=sha256:162556db42df6473d69f2bd9698373d63cd4493a40df06a95e492c17db77f2b7

Observation 8281365b-b181-4675-a8b8-25dd64ca1b2b · outbound

This paper cites rf- squid-based traveling-wave parametric amplifier with input saturation power of- 84 dbm across more than one octave in bandwidth.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems rf- squid-based traveling-wave parametric amplifier with input saturation power of- 84 dbm across more than one octave in bandwidth

Reference 42

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.886842Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.639720Z digest=sha256:daf8358c79476f8633a9e1c551147effa4ae3eec9d97595933e5248b67e6c94e

Observation bdd0926e-eda2-4e81-b010-ac4b33bc513a · outbound

This paper cites Product Leaflet: SHFQA 8.5 GHz Quantum An- alyzer.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Product Leaflet: SHFQA 8.5 GHz Quantum An- alyzer

Reference 43

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.692791Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.704956Z digest=sha256:a473c03cd0c06d52b40743ba0eeb2e740f906bd991c1296cb2acf1587a8a2c2a

Observation 7fd3a110-6558-4cc6-a1c7-f0a54a2533b8 · outbound

This paper cites Fault-tolerant quantum computation by anyons.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fault-tolerant quantum computation by anyons

Reference 44

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.570214Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.788758Z digest=sha256:6aa8cf746fd9ba1684527fb047f5758326c20febd7aa3d01279566f4674dbfb8

Observation 5328e349-ce1e-4abc-9e44-656a9ba83333 · outbound

This paper cites Quantum codes on a lattice with boundary.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Quantum codes on a lattice with boundary

Reference 45

Resolution
unresolved
no resolver link, observed 2026-08-06T00:41:22.864980Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-06T00:41:22.864980Z digest=sha256:15c90186205210cd52a7a866945d68d8880defa310bcba882019aaa87baec683

Observation a131a70b-256c-4bb9-b34f-f5ba5ed0ae94 · outbound

This paper cites Fault-tolerant quantum com- putation with high threshold in two dimensions.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fault-tolerant quantum com- putation with high threshold in two dimensions

Reference 46

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.459711Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:22.923464Z digest=sha256:7c36adafe7c85aadb1583b11687bf14fb566a60f235f010649079c85938eb63e

Observation 4f86d1a9-2cd6-4b9f-be05-03a7cd887d19 · outbound

This paper cites Surface codes: Towards practical large-scale quantum compu- tation.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Surface codes: Towards practical large-scale quantum compu- tation

Reference 47

Resolution
unresolved
no resolver link, observed 2026-08-06T00:41:22.981051Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-06T00:41:22.981051Z digest=sha256:2c832e85fcbc08914c9136d4758d071507067d7d2d2d175557b0181ec37beb15

Observation d926f8f6-5e19-4e64-a0d3-97b5b35d747a · outbound

This paper cites Scalable quantum circuit and control for a supercon- ducting surface code.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Scalable quantum circuit and control for a supercon- ducting surface code

Reference 48

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.311071Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.109179Z digest=sha256:bdca3cccbbec5cf74756e492c82adc438c8276a626193bc80e4cb4d430491536

Observation 73ae7321-5b42-4795-82d6-8cddc9bd5ea4 · outbound

This paper cites Demonstration of a high-fidelity cnot gate for fixed-frequency transmons with engineered zz suppression.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Demonstration of a high-fidelity cnot gate for fixed-frequency transmons with engineered zz suppression

Reference 49

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.127448Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.180435Z digest=sha256:f6f21ed2da417c45a8e17c55bf250554425c2719bd52cd146a58ef1e3140bbce

Observation 483228ab-eec3-4df7-9a97-cf8b5e351de3 · outbound

This paper cites Fast multiplexed superconducting-qubit readout with intrinsic purcell filtering using a mul- ticonductor transmission line.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fast multiplexed superconducting-qubit readout with intrinsic purcell filtering using a mul- ticonductor transmission line

Reference 50

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:28.012175Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.215972Z digest=sha256:9f58236bf3072881dce0f20edbc83cdf3e56b0a9f6515a69361f039b00e5f536

Observation 5f14ef99-0027-41f4-8010-662eb9217b3c · outbound

This paper cites Realization of high-fidelity cz and zz- free iswap gates with a tunable coupler.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Realization of high-fidelity cz and zz- free iswap gates with a tunable coupler

Reference 51

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.821543Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.272594Z digest=sha256:ab7dd2e999f56ffeaa2e13380d017a73d491b091387db4f9a9d3d364702007c8

Observation 0a1e7e6e-07d0-40d3-aae5-e90d722a2d2c · outbound

This paper cites Benchmarking coherent er- rors in controlled-phase gates due to spectator qubits.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Benchmarking coherent er- rors in controlled-phase gates due to spectator qubits

Reference 52

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.658087Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.274675Z digest=sha256:6198f040cb41d93b39eec2e220f8b69ae1ad856a4a49ab2c5837717091fd120f

Observation af57f749-2dd3-4906-8ae5-c555d11b4840 · outbound

This paper cites Using cryogenic cmos control electronics to enable a two-qubit cross-resonance gate.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Using cryogenic cmos control electronics to enable a two-qubit cross-resonance gate

Reference 53

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.542769Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.278559Z digest=sha256:7d4a5ade88c3c91ab4ed98cfad30a803d0a52cb3b3797a416af4e1aefe712572

Observation d45c8fd3-df5f-4f81-8d00-bfb948347456 · outbound

This paper cites Stim: a fast stabilizer circuit simulator.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Stim: a fast stabilizer circuit simulator

Reference 54

Resolution
unresolved
no resolver link, observed 2026-08-06T00:41:23.342742Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-06T00:41:23.342742Z digest=sha256:177eefa04c00efa02ad588e35151611c27b600d55271dc7bed59d691d2b184a2

Observation 75eb8a38-14ac-4973-a630-e91afcc67de7 · outbound

This paper cites Sparse Blossom: correcting a million errors per core second with minimum-weight matching.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Sparse Blossom: correcting a million errors per core second with minimum-weight matching

Reference 55

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.384424Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.404206Z digest=sha256:8e9963aeff79cdd50856b19072a126371cb2a2fd7450ff93fdbb11adcec59ba3

Observation d483120a-f3a7-4d08-8121-5036c8989c75 · outbound

This paper cites Machine learning assisted superconducting qubit readout.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Machine learning assisted superconducting qubit readout

Reference 56

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.230869Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.489180Z digest=sha256:acfe5fe5d03bb314fb993c388c5618c41a3c9d3e5d816792a695c12975768fa8

Observation 1c0782c6-649a-444d-908a-b60960da743d · outbound

This paper cites Andersen, Markus Ansmann, Frank Arute, Kunal Arya, Abraham Asfaw, Juan Atalaya, Ryan Babbush, Dave Bacon, Joseph C.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Andersen, Markus Ansmann, Frank Arute, Kunal Arya, Abraham Asfaw, Juan Atalaya, Ryan Babbush, Dave Bacon, Joseph C

Reference 57

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:27.090293Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.557149Z digest=sha256:73113f09c8f8255915f998ada757c736f9ce2d6eedd22cd9039fc199dd52ef77

Observation 98e05e66-a5c8-4fea-93bb-8be946b5b4e5 · outbound

This paper cites Dispersive Qubit Readout with Intrinsic Resonator Reset.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Dispersive Qubit Readout with Intrinsic Resonator Reset

Reference 58

Resolution
unresolved
no resolver link, observed 2026-08-06T00:41:23.677094Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-06T00:41:23.677094Z digest=sha256:1db6595947982ef5c7e14da6be665bc0af1ad99da49f8ac9a24d14bfee6dbb3e

Observation 205515df-111d-4883-a7dd-10b144c334b6 · outbound

This paper cites Removing leakage-induced correlated errors in superconducting quantum error correction.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Removing leakage-induced correlated errors in superconducting quantum error correction

Reference 59

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.950819Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.786359Z digest=sha256:999ed9c4956db28ff0dd59842a897855a6bd2c65ebfaf56e0bb2c94c67a0a5f0

Observation a62d7932-e7ef-46c3-9d86-3eb2fc551b58 · outbound

This paper cites Fast readout and reset of a superconducting qubit coupled to a resonator with an intrinsic purcell filter.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fast readout and reset of a superconducting qubit coupled to a resonator with an intrinsic purcell filter

Reference 60

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.752032Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.860069Z digest=sha256:19d8cf2bef2b6e4d1357fe003b14fb3061568c92c53ec4997d62ad25b3f971b7

Observation 68a0125e-86fb-4499-9cc4-c415a7972916 · outbound

This paper cites Fast reset and suppressing spontaneous emission of a superconducting qubit.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fast reset and suppressing spontaneous emission of a superconducting qubit

Reference 61

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.569574Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:23.951250Z digest=sha256:e1564d7eba582b33e9d401471b305e2f370aedb895d27e78801219206e0aa792

Observation 7965aee4-e3e3-40f2-af3b-0c99850d22f2 · outbound

This paper cites Fast unconditional reset and leakage reduction in fixed-frequency transmon qubits.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Fast unconditional reset and leakage reduction in fixed-frequency transmon qubits

Reference 62

Resolution
unresolved
no resolver link, observed 2026-08-06T00:41:24.008010Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-06T00:41:24.008010Z digest=sha256:085529eae7f12cc1b3708dfbe4c9bc6d4a6aab73c7a5c3c00f5db8cfc04e0c37

Observation 502be5dc-d30e-423b-b7f6-bf9c9f5a605e · outbound

This paper cites New Products: Enhanced Cooling, High-Density Flex Wiring, and LD400sl — bluefors.com.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems New Products: Enhanced Cooling, High-Density Flex Wiring, and LD400sl — bluefors.com

Reference 63

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.379924Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.117268Z digest=sha256:eb5d90895e0e4d3b7c7998e5f96c4365585ccdd4b179e112517b0e8daf3d5f79

Observation 9e2ddd33-5175-4e81-987b-276bfe0678f5 · outbound

This paper cites Delft circuits product roadmap.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Delft circuits product roadmap

Reference 64

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.188684Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.208977Z digest=sha256:10b9eff373669a00aab98fe0bfcbbdefe09bbb35658346204bab38389a80670b

Observation e1b6b255-288e-404c-9b27-aeb428a4d20b · outbound

This paper cites The connection of refrigeration to a superconducting magnet with a minimum amount of cryogen.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems The connection of refrigeration to a superconducting magnet with a minimum amount of cryogen

Reference 65

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:26.025383Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.292107Z digest=sha256:c4c2094cab012ec5f5ced1546e009dc88a5876db21232f6c11eedaba5465f5fd

Observation a2fbc2ae-f1e5-4bf5-b512-6b41400b84af · outbound

This paper cites National Bureau of Standards and RW Powell.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems National Bureau of Standards and RW Powell

Reference 66

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:25.831284Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.404438Z digest=sha256:a05fd741defd503884b1884c6831eb522a3897c203d225ed7ac4bb982c12ed24

Observation ea82cfc1-9397-49ba-bd49-1dfbf4c9941a · outbound

This paper cites Kerr reversal in josephson meta-material and traveling wave parametric amplification.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Kerr reversal in josephson meta-material and traveling wave parametric amplification

Reference 67

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:25.673915Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.485184Z digest=sha256:e974baed4081db14d60154c00910cf11a82b67b6700a8f508bc24d4c0fae28d9

Observation eaa9cee5-5eb9-4838-bc0f-d05c5b36a942 · outbound

This paper cites Qmc-cryocoupler-20nm.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Qmc-cryocoupler-20nm

Reference 68

Resolution
verified fuzzy
raw_fallback, observed 2026-08-06T00:41:25.484868Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.561684Z digest=sha256:00a97e0391fd058e147c4a1c7130a6625fbc7b06f145a5a803a9cca0b74f78b9

Observation 8b2589b9-1767-4a4d-8c66-6a459b40a31a · outbound

This paper cites an unresolved cited work.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Unresolved cited work

Reference 2015

Resolution
unresolved
raw_fallback, observed 2026-08-06T00:41:25.292334Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:24.689394Z digest=sha256:cfd85a21dce2bee91f3c68d28bc54eac7cd1b42fcdbf3c0531028ac8c7651182

Observation bc43ceef-4e78-4ea5-92bf-caf5d2fb6366 · outbound

This paper cites an unresolved cited work.

Revisiting Thermal Scalability for Large-Scale Superconducting Quantum Systems Unresolved cited work

Reference 2025

Resolution
parse uncertain
raw_fallback, observed 2026-08-06T00:41:30.947514Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-06T00:41:21.591030Z digest=sha256:5a9fbb4adb292fa713023819a5baaf345baef9810bb52d7ce849b5546bd8453c

Pith citing papers

No inbound Pith citation observations are available.