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Paper Citation Record · LEDGER

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing

As of 18 August 2026, this Paper Citation Record lists 38 of 38 outbound references and 0 inbound Pith citation observations for arXiv:2608.06318.

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

pith.paper-citation-record.v1
2608.06318 v2

Coverage vector

measured 38 of 38 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-11T04:17:12.784264Z

measured 38 of 38 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+00:00

measured 0 of 0 inbound itemization

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38 of 38 outbound references displayed

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Outbound references

Observation 44e08b3e-d9de-4978-aa46-ace760b44409 · outbound

This paper cites Real-time adaptive tracking of fluctuating relaxation rates in supercon- ducting qubits,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Real-time adaptive tracking of fluctuating relaxation rates in supercon- ducting qubits,

Reference 1

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Observation fb85d812-5178-4a9d-9a8c-f5e17942b132 · outbound

This paper cites Spectroscopy of low-frequency noise and its temperature dependence in a superconducting qubit.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Spectroscopy of low-frequency noise and its temperature dependence in a superconducting qubit

Reference 2

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Observation 93071b03-a8db-4bea-a7a8-3f0114235c8e · outbound

This paper cites Millisecond charge-parity fluctuations and induced decoherence in a superconducting transmon qubit,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Millisecond charge-parity fluctuations and induced decoherence in a superconducting transmon qubit,

Reference 3

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Observation c1f89c5b-ef44-442a-bcda-56f209a80f5a · outbound

This paper cites Minimum quantum run-time characterization and calibration via restless measurements with dynamic repetition rates.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Minimum quantum run-time characterization and calibration via restless measurements with dynamic repetition rates

Reference 4

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Observation 4cdff5c9-8d7a-4975-92ff-cd6bb5cce1ca · outbound

This paper cites Trapped-ion two-qubit gates with>99.99% fidelity without ground-state cooling,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Trapped-ion two-qubit gates with>99.99% fidelity without ground-state cooling,

Reference 5

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Observation 73907f3a-8a9a-4432-b22b-f93095da539a · outbound

This paper cites Manipulating the quantum state of an electrical circuit,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Manipulating the quantum state of an electrical circuit,

Reference 6

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Observation b54acc50-c5aa-4d37-b23e-956c29b1d453 · outbound

This paper cites Efficient measurement of quantum gate error by interleaved randomized benchmarking,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Efficient measurement of quantum gate error by interleaved randomized benchmarking,

Reference 7

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Observation ff0772c4-becb-4e8e-a3a9-84467da5eab2 · outbound

This paper cites QubiC 2.0: An Extensible Open-Source Qubit Control System Capable of Mid-Circuit Measurement and Feed-Forward.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing QubiC 2.0: An Extensible Open-Source Qubit Control System Capable of Mid-Circuit Measurement and Feed-Forward

Reference 8

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Observation 9c51a489-ede0-415b-8181-7ef86ff677b8 · outbound

This paper cites The qick (quantum instrumentation control kit): Readout and control for qubits and detectors,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing The qick (quantum instrumentation control kit): Readout and control for qubits and detectors,

Reference 9

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Observation 7aea0eaa-34f5-4461-9b13-ad5d3d4da957 · outbound

This paper cites Optimizing designs using several types of memories on modern fpgas,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Optimizing designs using several types of memories on modern fpgas,

Reference 10

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Observation a435e8ab-5037-4764-9807-caac8b9fe1db · outbound

This paper cites Quantum Computing in the Cloud: Analyzing job and machine characteristics.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Quantum Computing in the Cloud: Analyzing job and machine characteristics

Reference 11

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Observation 205ab1c7-8833-4e80-bbfc-11229fc0968b · outbound

This paper cites Rethinking quantum noise in quantum machine learning: When noise improves learning,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Rethinking quantum noise in quantum machine learning: When noise improves learning,

Reference 12

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Observation 8c4d78e6-5868-4317-accf-eeed32808d51 · outbound

This paper cites Adaptive fidelity estimation for quantum programs with graph-guided noise awareness,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Adaptive fidelity estimation for quantum programs with graph-guided noise awareness,

Reference 13

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Observation b0d043fa-e7da-4c20-86ba-81f0b44da4aa · outbound

This paper cites Xkernel: Principled Performance Tunability of Operating System Kernels.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Xkernel: Principled Performance Tunability of Operating System Kernels

Reference 14

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Observation 5e6bd962-e5a6-48d3-bcdf-d51479579c79 · outbound

This paper cites Modeling Noisy Quantum Circuits Using Experimental Characterization.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Modeling Noisy Quantum Circuits Using Experimental Characterization

Reference 15

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Observation 7cd911a7-8158-418c-8450-0220e651fe5d · outbound

This paper cites Learning to rank quantum circuits for hardware-optimized performance enhancement.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Learning to rank quantum circuits for hardware-optimized performance enhancement

Reference 16

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Observation 306b91ee-4e81-49e1-942d-9abd40657665 · outbound

This paper cites Ant-q: Breaking memory bottlenecks in quantum control systems,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Ant-q: Breaking memory bottlenecks in quantum control systems,

Reference 17

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Observation e2d44d8b-2957-4e20-afcc-e9ed6244d786 · outbound

This paper cites End-to-end protocol for high-quality QAOA parameters with few shots,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing End-to-end protocol for high-quality QAOA parameters with few shots,

Reference 18

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Observation 4989651b-a8db-4ca1-8d2f-3c3d90bc2dcc · outbound

This paper cites Demonstrating the power of quantum computers, certification of highly entangled measurements and scalable quantum nonlocality,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Demonstrating the power of quantum computers, certification of highly entangled measurements and scalable quantum nonlocality,

Reference 19

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Observation 5f34a749-1f42-4449-b694-6327e385af90 · outbound

This paper cites Relativistic VQE calculations of molecular electric dipole moments on trapped ion quantum hardware.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Relativistic VQE calculations of molecular electric dipole moments on trapped ion quantum hardware

Reference 20

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Observation 567db22c-2eb4-4262-821a-c7c31045779c · outbound

This paper cites Ground-state energy estimation on current quantum hardware through the variational quantum eigensolver: A practical study,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Ground-state energy estimation on current quantum hardware through the variational quantum eigensolver: A practical study,

Reference 21

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Observation 5b41ab50-ec2d-4b98-8112-66536fbe1004 · outbound

This paper cites A Scalable 5,6-Qubit Grover's Quantum Search Algorithm.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing A Scalable 5,6-Qubit Grover's Quantum Search Algorithm

Reference 22

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Observation 4f1018a4-254b-4c96-8e06-c138c4389c1f · outbound

This paper cites Grove VQE documentation,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Grove VQE documentation,

Reference 23

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Observation 6ac7c72c-e01b-40cd-89a4-c53d7d83131f · outbound

This paper cites Artificial-intelligence- driven shot reduction in quantum measurement,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Artificial-intelligence- driven shot reduction in quantum measurement,

Reference 24

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Observation 728a0fdd-4317-4604-9818-d6699506a08c · outbound

This paper cites Quantum query algorithms — fundamentals of quantum algorithms,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Quantum query algorithms — fundamentals of quantum algorithms,

Reference 25

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Observation cc3fe4dc-b3b8-4549-94ec-c113b6210598 · outbound

This paper cites Practical evaluation of quantum kernel methods for radar micro-doppler classification on noisy intermediate-scale quantum (NISQ) hardware,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Practical evaluation of quantum kernel methods for radar micro-doppler classification on noisy intermediate-scale quantum (NISQ) hardware,

Reference 26

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Observation b5a25e4d-dc5f-415c-b63c-46a1c735457f · outbound

This paper cites An Experimental Study of Shor's Factoring Algorithm on IBM Q.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing An Experimental Study of Shor's Factoring Algorithm on IBM Q

Reference 27

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Observation 903b4279-ef3a-4e29-9576-324b44b9f0de · outbound

This paper cites Teleportation — utility-scale quantum computing,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Teleportation — utility-scale quantum computing,

Reference 28

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Observation f76f5db7-125d-44da-b464-0393aefe0f1e · outbound

This paper cites Three months in the life of cloud quantum computing,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Three months in the life of cloud quantum computing,

Reference 30

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Observation 1501c6b3-89d8-41ad-9f63-a8d30e55aa7f · outbound

This paper cites QAOA tutorial,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing QAOA tutorial,

Reference 31

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Observation c70bc663-fca6-4345-9cc5-e9cdf8c57d18 · outbound

This paper cites Qiskit: An open-source framework for quantum computing,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Qiskit: An open-source framework for quantum computing,

Reference 32

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source=pdf_text observed=2026-08-11T04:17:12.746673Z digest=sha256:d35e57c6169c3c2637d92ee55d497ad6efae5ac141070f1eb9263c9586f18040

Observation ce206739-dd78-4e54-a749-3b097b79d928 · outbound

This paper cites Multi-FPGA Synchronization and Data Communication for Quantum Control and Measurement.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Multi-FPGA Synchronization and Data Communication for Quantum Control and Measurement

Reference 33

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Observation 4ed93891-ca6a-4561-bca6-96b32dd54c17 · outbound

This paper cites Advanced quantum testbed,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Advanced quantum testbed,

Reference 34

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Observation 7cad9473-871d-40b2-bca4-c2712e96b291 · outbound

This paper cites An adaptive optimizer for measurement-frugal variational algorithms,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing An adaptive optimizer for measurement-frugal variational algorithms,

Reference 35

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source=pdf_text observed=2026-08-11T04:17:12.766341Z digest=sha256:e009847ae4f67ef2c03063ac255cb5e783d3db051b62c14b636d840ba2d51b9a

Observation 08ae2506-b40d-49bb-8039-e1882d15c4ae · outbound

This paper cites Qtenon: Towards low-latency architecture inte- gration for accelerating hybrid quantum-classical computing,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Qtenon: Towards low-latency architecture inte- gration for accelerating hybrid quantum-classical computing,

Reference 36

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Observation 5043a81d-2666-4896-93a4-099eeda2656e · outbound

This paper cites Integration of quantum accelerators into hpc: Toward a unified quantum platform,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Integration of quantum accelerators into hpc: Toward a unified quantum platform,

Reference 37

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source=pdf_text observed=2026-08-11T04:17:12.778288Z digest=sha256:9a2d938ff4f026b969439b4c129e1ab0667f5df863d8e234ef1296e4e8e2738f

Observation 585e7665-4b79-4d59-9f4b-b8f9fcb5cb35 · outbound

This paper cites Manarat: A scalable qick-based control system for superconducting quantum processors supporting synchro- nized control of 10 flux-tunable qubits,.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Manarat: A scalable qick-based control system for superconducting quantum processors supporting synchro- nized control of 10 flux-tunable qubits,

Reference 38

Resolution
unresolved
no resolver link, observed 2026-08-11T04:17:12.784264Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-11T04:17:12.784264Z digest=sha256:17b9fd31fbc41f4b5c83259384c42bcbf612f116ab0a00013a3ab72570954c03

Observation 1135e882-e899-4ff0-9b96-07f660867615 · outbound

This paper cites Quantum Image Classification: Experiments on Utility-Scale Quantum Computers.

Breaking Memory Bottlenecks in Quantum Control Systems for More Precise Experiments and Higher Throughput Computing Quantum Image Classification: Experiments on Utility-Scale Quantum Computers

Reference 2025

Resolution
unresolved
no resolver link, observed 2026-08-11T04:17:12.719617Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-11T04:17:12.719617Z digest=sha256:091b90ecae2ce0a21df97cd7983708e4167f5ed9ae16b8ddd94a50d0477a82de

Pith citing papers

No inbound Pith citation observations are available.