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Paper Citation Record · LEDGER

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information

As of 10 August 2026, this Paper Citation Record lists 41 of 41 outbound references and 0 inbound Pith citation observations for arXiv:2502.01730.

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

pith.paper-citation-record.v1
2502.01730 v1

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measured 41 of 41 reference resolution

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Reference resolution

41 of 41 outbound references displayed

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Outbound references

Observation 026f450a-eeea-48ab-b02e-15ff5c9aabb7 · outbound

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Unresolved cited work

Reference 1

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This paper cites Disentangling Hype from Practicality: On Realistically Achieving Quantum Advantage.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Disentangling Hype from Practicality: On Realistically Achieving Quantum Advantage

Reference 2

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Prospects of Quantum Computing for Molecular Sciences

Reference 3

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Emerging quantum computing algorithms for quantum chemistry

Reference 4

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This paper cites Measurements as a roadblock to near-term practical quantum advantage in chemistry: resource analysis.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Measurements as a roadblock to near-term practical quantum advantage in chemistry: resource analysis

Reference 5

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This paper cites Minimizing State Preparations in Variational Quantum Eigensolver by Partitioning into Commuting Families.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Minimizing State Preparations in Variational Quantum Eigensolver by Partitioning into Commuting Families

Reference 6

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This paper cites Pauli Partitioning with Respect to Gate Sets.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Pauli Partitioning with Respect to Gate Sets

Reference 7

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This paper cites Measurement Optimization in the Variational Quantum Eigensolver Using a Minimum Clique Cover.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Measurement Optimization in the Variational Quantum Eigensolver Using a Minimum Clique Cover

Reference 8

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Efficient quantum measurement of Pauli operators in the presence of finite sampling error

Reference 9

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Measurement reduction in variational quantum algorithms

Reference 10

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This paper cites Operator Sampling for Shot-frugal Optimization in Variational Algorithms.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Operator Sampling for Shot-frugal Optimization in Variational Algorithms

Reference 11

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This paper cites Predicting Features of Quantum Systems from Very Few Measurements.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Predicting Features of Quantum Systems from Very Few Measurements

Reference 12

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Predicting Many Properties of a Quantum System from Very Few Measurements

Reference 13

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information The randomized measurement toolbox

Reference 14

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Measurements of Quantum Hamiltonians with Locally-Biased Classical Shadows

Reference 15

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Adaptive estimation of quantum observables

Reference 16

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This paper cites Overlapped grouping measurement: A unified framework for measuring quantum states.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Overlapped grouping measurement: A unified framework for measuring quantum states

Reference 17

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Guaranteed efficient energy estimation of quantum many-body Hamiltonians using ShadowGrouping

Reference 18

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Optimizing Shot Assignment in Variational Quantum Eigensolver Measurement

Reference 19

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Unresolved cited work

Reference 20

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Audibert, R

Reference 21

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This paper cites Mnih,Efficient stopping rules, Master’s thesis, Univer- sity of Alberta (2008).

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Mnih,Efficient stopping rules, Master’s thesis, Univer- sity of Alberta (2008)

Reference 22

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Elucidating Reaction Mechanisms on Quantum Computers

Reference 23

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Quantum computing enhanced computational catalysis

Reference 24

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Hardware-efficient Variational Quantum Eigensolver for Small Molecules and Quantum Magnets

Reference 25

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Quantum chemistry calculations on a trapped-ion quantum simulator

Reference 26

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Hartree-Fock on a superconducting qubit quantum computer

Reference 27

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Optimizing Electronic Structure Simulations on a Trapped-ion Quantum Computer using Problem Decomposition

Reference 28

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Unresolved cited work

Reference 29

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Qibo: a framework for quantum simulation with hardware acceleration

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Unresolved cited work

Reference 31

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information A variational eigenvalue solver on a quantum processor

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Towards Practical Quantum Variational Algorithms

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information The theory of variational hybrid quantum-classical algorithms

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Shot-noise reduction for lattice Hamiltonians

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Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Scalable Quantum Simulation of Molecular Energies

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Observation a1895076-2806-4d34-ad5e-18615cad36f2 · outbound

This paper cites Hadfield, adaptiveshadows, GitHub repos- itory https://github.com/charleshadfield/ adaptiveshadows/tree/main/Hamiltonians (2021).

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Hadfield, adaptiveshadows, GitHub repos- itory https://github.com/charleshadfield/ adaptiveshadows/tree/main/Hamiltonians (2021)

Reference 37

Resolution
verified fuzzy
raw_fallback, observed 2026-08-09T14:45:43.786916Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

source=pdf_text observed=2026-08-09T14:45:43.370316Z digest=sha256:b3825919647e511faaf17fa16f09355b1184190e4e613d974b0c7b36b657f43b

Observation 90f23c90-8141-4e55-b57d-92094fd27098 · outbound

This paper cites Gresch and M.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Gresch and M

Reference 38

Resolution
verified fuzzy
raw_fallback, observed 2026-08-09T14:45:43.775911Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

source=pdf_text observed=2026-08-09T14:45:43.373966Z digest=sha256:828f4e46854983e46413763d29ea64781167e79daa66128fe2b4c432516c5f90

Observation dc11b46b-29b3-4e62-bbc0-ed8fd91b550c · outbound

This paper cites Jordan and W.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Jordan and W

Reference 39

Resolution
verified fuzzy
raw_fallback, observed 2026-08-09T14:45:43.764601Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

source=pdf_text observed=2026-08-09T14:45:43.377472Z digest=sha256:611e3771e49dccb684f95306ebf201284e987e58253bac67047865c18ac9473c

Observation 1c5f310c-1bc6-4ab5-84be-6e6c77420a86 · outbound

This paper cites an unresolved cited work.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information Unresolved cited work

Reference 40

Resolution
unresolved
raw_fallback, observed 2026-08-09T14:45:43.753738Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

source=pdf_text observed=2026-08-09T14:45:43.381091Z digest=sha256:bef348636ba8bac4f04ff43386cab8217ab0c030bedecd5be083d94049d153e3

Observation e924538b-0a5a-4724-bc55-75774af2a1c8 · outbound

This paper cites The Bravyi-Kitaev transformation for quantum computation of electronic structure.

Reducing the sampling complexity of energy estimation in quantum many-body systems using empirical variance information The Bravyi-Kitaev transformation for quantum computation of electronic structure

Reference 41

Resolution
unresolved
no resolver link, observed 2026-08-09T14:45:43.384492Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-09T14:45:43.384492Z digest=sha256:da4fe91e42a9e36c6a8ed2a75c560e8cf5e6bf44a390ef429cb12a445fd25d4c

Pith citing papers

No inbound Pith citation observations are available.