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Paper Citation Record · LEDGER

Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

As of 16 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 28 inbound Pith citation observations for arXiv:cond-mat/0408370.

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pith.paper-citation-record.v1
cond-mat/0408370 v1

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measured 28 of 28 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

measured 28 of 28 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-15T16:44:05.030431Z

measured 0 of 1 external citation measurements

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Source: pith, observed 2026-07-04T17:20:00.655388Z

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Pith citing papers

Observation 0e2db4e1-e9e3-4dde-9a33-314b7a4274ea · inbound

Quantum computing of chirality imbalance in SU(2) gauge theory cites this paper.

Quantum computing of chirality imbalance in SU(2) gauge theory Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 29

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Observation 5929d47b-7476-4fd1-9fe5-3d8e85bf6e4f · inbound

Diffusion models learn distributions generated by complex Langevin dynamics cites this paper.

Diffusion models learn distributions generated by complex Langevin dynamics Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 1

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Observation 4ba5625f-2006-4f70-845c-408ec9c198b1 · inbound

Lefschetz thimble-inspired weight regularizations for complex Langevin simulations cites this paper.

Lefschetz thimble-inspired weight regularizations for complex Langevin simulations Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 3

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Observation bd9f0e97-7415-438e-b6e4-b23cad7dfb4f · inbound

The Role of Integration Cycles in Complex Langevin Simulations cites this paper.

The Role of Integration Cycles in Complex Langevin Simulations Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 6

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Observation 21be49a4-5bab-409b-864e-bb0fb5ddb7d4 · inbound

Revisiting color superconductors in bottom-up holography cites this paper.

Revisiting color superconductors in bottom-up holography Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 6

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Observation 6296d0ed-7252-47ad-9921-b59eafb0ccab · inbound

Systematic Improvement of Hamiltonian Truncation Effective Theory cites this paper.

Systematic Improvement of Hamiltonian Truncation Effective Theory Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 1

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Observation 3dbb8fb8-9484-4bc0-bacb-debc8dfec7d9 · inbound

Simultaneous approximation of multiple degenerate states using a single neural network quantum state cites this paper.

Simultaneous approximation of multiple degenerate states using a single neural network quantum state Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 30

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Observation e957dbce-1d0d-4d7e-8d99-163f12b26308 · inbound

Combining complex Langevin dynamics with score-based and energy-based diffusion models cites this paper.

Combining complex Langevin dynamics with score-based and energy-based diffusion models Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 1

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Observation bf1b9bf7-c613-4704-a65f-98547e2fbd67 · inbound

Constrained Symplectic Quantization I: the Quantum Harmonic Oscillator cites this paper.

Constrained Symplectic Quantization I: the Quantum Harmonic Oscillator Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 23

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Observation 08343ea4-9f10-4d45-b891-3bec22dd8f0f · inbound

Graph-Theoretic Analysis of Phase Optimization Complexity in Variational Wave Functions for Heisenberg Antiferromagnets cites this paper.

Graph-Theoretic Analysis of Phase Optimization Complexity in Variational Wave Functions for Heisenberg Antiferromagnets Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 47

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Observation 4642f3f6-e892-4d55-accc-7fdcb8e201b3 · inbound

Toward selective quantum advantage in hadronic tomography:explicit cases from Compton form factors, GPDs, TMDs, and GTMDs cites this paper.

Toward selective quantum advantage in hadronic tomography:explicit cases from Compton form factors, GPDs, TMDs, and GTMDs Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 7

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

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Observation a80eeda0-a01a-4af9-b44b-dda71e22a5db · inbound

Correctness criteria for complex Langevin cites this paper.

Correctness criteria for complex Langevin Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 1

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Observation ad6b1a0c-637e-4a5f-83a5-e829a1e931c4 · inbound

Finite-density equation of state of hot QCD using the complex Langevin equation cites this paper.

Finite-density equation of state of hot QCD using the complex Langevin equation Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 7

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Observation ad389716-915b-499e-bd01-2a5349b7fdb5 · inbound

Chiral first order phase transition at finite baryon density and zero temperature from self-consistent pole masses in the linear sigma model with quarks cites this paper.

Chiral first order phase transition at finite baryon density and zero temperature from self-consistent pole masses in the linear sigma model with quarks Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 47

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Observation 9bd155bf-b3f1-49b4-86c8-567fe6ad8ba2 · inbound

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods cites this paper.

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 19

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Observation 9b54112a-6b5b-4117-95bd-48938d91e0ae · inbound

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods cites this paper.

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 19

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Observation 4dc8392c-de4d-46a0-9c32-560a8f2a7002 · inbound

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods cites this paper.

Tightening energy-based boson truncation bound using Monte Carlo-assisted methods Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 19

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

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Observation 5a99bb00-eeae-4164-80ac-6f5c8ea0c563 · inbound

The massive Thirring / sine-Gordon model with non-zero current density cites this paper.

The massive Thirring / sine-Gordon model with non-zero current density Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 16

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Observation b4ffa609-1e9b-4392-b6de-f6333386071c · inbound

Preparing thermal states of frustrated quantum spin systems using 139 qubits cites this paper.

Preparing thermal states of frustrated quantum spin systems using 139 qubits Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 18

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Observation a4e4e4c1-e718-418f-84db-4d331056d7d1 · inbound

Preparing thermal states of frustrated quantum spin systems using 139 qubits cites this paper.

Preparing thermal states of frustrated quantum spin systems using 139 qubits Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 18

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Observation 89844977-5a45-4290-8820-beaed0160aca · inbound

Constrained Symplectic Quantization II: The Free Scalar Field cites this paper.

Constrained Symplectic Quantization II: The Free Scalar Field Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 14

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Observation 8a8a88df-3496-4670-b6e7-9eac52fb37d2 · inbound

Photonic Analog Quantum Simulation of (1+1)-Dimensional $U(1)$ Lattice Gauge Theory with Dynamical Matter cites this paper.

Photonic Analog Quantum Simulation of (1+1)-Dimensional $U(1)$ Lattice Gauge Theory with Dynamical Matter Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 2

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Observation e4291f07-dd68-4f3f-b353-2ad874b6738e · inbound

String dynamics of a (2+1)D U(1) quantum link model on a digital quantum computer cites this paper.

String dynamics of a (2+1)D U(1) quantum link model on a digital quantum computer Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 8

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A Finite-Volume Scheme for the Continuum Extrapolation of Lattice Step-Scaling in (2+1)D Hamiltonian U(1) Gauge Theory cites this paper.

A Finite-Volume Scheme for the Continuum Extrapolation of Lattice Step-Scaling in (2+1)D Hamiltonian U(1) Gauge Theory Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 7

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Observation 82425b2e-68d9-46f2-a8ef-4a1cfa2efcfc · inbound

Fully-heavy multiquarks in neural-network quantum states cites this paper.

Fully-heavy multiquarks in neural-network quantum states Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 28

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Observation c71e94d6-c8b4-4bbc-bd18-423b6cdba526 · inbound

Studying the QCD Matter produced in Heavy-Ion Collisions using the MUSES Calculation Engine cites this paper.

Studying the QCD Matter produced in Heavy-Ion Collisions using the MUSES Calculation Engine Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 27

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Observation c27fd8c3-b1c3-4994-85d7-29ef5d525dae · inbound

The equation of state for neutron stars cites this paper.

The equation of state for neutron stars Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 162

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Observation f4b9445c-232f-476b-8e19-30271a059773 · inbound

Confinement Versus Screening in the Schwinger Model on AdS$_2$ from Bosonization and Tensor Networks cites this paper.

Confinement Versus Screening in the Schwinger Model on AdS$_2$ from Bosonization and Tensor Networks Computational complexity and fundamental limitations to fermionic quantum Monte Carlo simulations

Reference 6

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