quant-ph
Papers filed under quant-ph on arXiv, each one already summarized by Paperlayer. Open any of them to read the summary beside the original PDF, with every point linked to the line, figure, or table it came from.
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1 to 60 of 1,594
Alibaba Cloud Quantum Development Platform: Large-Scale Classical Simulation of Quantum Circuits
Fang Zhang, Cupjin Huang, Michael Newman +10
quant-pharXiv:1907.11217v32019Topological Quantum Distillation
H. Bombin, M. A. Martin-Delgado
quant-phcond-mat.str-elhep-tharXiv:quant-ph/0605138v32006The Pinnacle Architecture: Reducing the cost of breaking RSA-2048 to 100 000 physical qubits using quantum LDPC codes
Paul Webster, Lucas Berent, Omprakash Chandra +5
quant-pharXiv:2602.11457v12026The XZZX Surface Code
J. Pablo Bonilla Ataides, David K. Tuckett, Stephen D. Bartlett +2
quant-pharXiv:2009.07851v32020Beyond Barren Plateaus: Quantum Variational Algorithms Are Swamped With Traps
Eric R. Anschuetz, Bobak T. Kiani
quant-pharXiv:2205.05786v22022Phase transition in Random Circuit Sampling
A. Morvan, B. Villalonga, X. Mi +182
quant-pharXiv:2304.11119v22023A Categorical Quantum Logic
Samson Abramsky, Ross Duncan
quant-phcs.LOarXiv:quant-ph/0512114v12005Efficient Symmetry-Preserving State Preparation Circuits for the Variational Quantum Eigensolver Algorithm
Bryan T. Gard, Linghua Zhu, George S. Barron +3
quant-pharXiv:1904.10910v32019QuantumNAS: Noise-Adaptive Search for Robust Quantum Circuits
Hanrui Wang, Yongshan Ding, Jiaqi Gu +5
quant-phcs.ARcs.LGarXiv:2107.10845v52021Quantum Convolutional Neural Networks
Iris Cong, Soonwon Choi, Mikhail D. Lukin
quant-phcond-mat.str-elarXiv:1810.03787v22018Supervised learning with quantum enhanced feature spaces
Vojtech Havlicek, Antonio D. Córcoles, Kristan Temme +4
quant-phstat.MLarXiv:1804.11326v22018Active learning machine learns to create new quantum experiments
Alexey A. Melnikov, Hendrik Poulsen Nautrup, Mario Krenn +4
quant-phcs.AIstat.MLarXiv:1706.00868v32017Elucidating Reaction Mechanisms on Quantum Computers
Markus Reiher, Nathan Wiebe, Krysta M Svore +2
quant-pharXiv:1605.03590v22016Quantum Cellular Automata on a Dual-Species Rydberg Processor
Ryan White, Vikram Ramesh, Alexander Impertro +6
quant-phcond-mat.quant-gasarXiv:2601.16257v32026Quantacell: Powerful charging of quantum batteries
Felix C. Binder, Sai Vinjanampathy, Kavan Modi +1
quant-phcond-mat.stat-mecharXiv:1503.07005v22015Tensor product methods and entanglement optimization for ab initio quantum chemistry
Szilárd Szalay, Max Pfeffer, Valentin Murg +4
physics.chem-phcond-mat.str-elmath-pharXiv:1412.5829v12014Exploiting dynamic quantum circuits in a quantum algorithm with superconducting qubits
Antonio D. Corcoles, Maika Takita, Ken Inoue +4
quant-pharXiv:2102.01682v12021Exponential Error Suppression for Near-Term Quantum Devices
Bálint Koczor
quant-pharXiv:2011.05942v42020Protecting a Bosonic Qubit with Autonomous Quantum Error Correction
Jeffrey M. Gertler, Brian Baker, Juliang Li +3
quant-pharXiv:2004.09322v22020Fault-tolerant quantum computing with color codes
Andrew J. Landahl, Jonas T. Anderson, Patrick R. Rice
quant-pharXiv:1108.5738v12011Distributed Quantum Computing across an Optical Network Link
D. Main, P. Drmota, D. P. Nadlinger +6
quant-pharXiv:2407.00835v12024Quantum many-body dynamics in two dimensions with artificial neural networks
Markus Schmitt, Markus Heyl
cond-mat.str-elcond-mat.dis-nnquant-pharXiv:1912.08828v32019A Geometric Perspective on Quantum Parameter Estimation
Jasminder S. Sidhu, Pieter Kok
quant-phcond-mat.dis-nnphysics.app-pharXiv:1907.06628v22019General-purpose quantum circuit simulator with Projected Entangled-Pair States and the quantum supremacy frontier
Chu Guo, Yong Liu, Min Xiong +12
quant-phphysics.comp-pharXiv:1905.08394v32019Quantum Teleportation-Inspired Algorithm for Sampling Large Random Quantum Circuits
Ming-Cheng Chen, Riling Li, Lin Gan +4
quant-pharXiv:1901.05003v12019Quantum Supremacy Is Both Closer and Farther than It Appears
Igor L. Markov, Aneeqa Fatima, Sergei V. Isakov +1
quant-phcs.DCcs.ETarXiv:1807.10749v32018Fast and efficient exact synthesis of single qubit unitaries generated by Clifford and T gates
Vadym Kliuchnikov, Dmitri Maslov, Michele Mosca
quant-phcs.ETarXiv:1206.5236v42012Quantum Computational Advantage via 60-Qubit 24-Cycle Random Circuit Sampling
Qingling Zhu, Sirui Cao, Fusheng Chen +50
quant-pharXiv:2109.03494v22021The Born Supremacy: Quantum Advantage and Training of an Ising Born Machine
Brian Coyle, Daniel Mills, Vincent Danos +1
quant-phcs.LGarXiv:1904.02214v42019Coherence as a resource in decision problems: The Deutsch-Jozsa algorithm and a variation
Mark Hillery
quant-pharXiv:1512.01874v22015Quantum Algorithmic Measurement
Dorit Aharonov, Jordan Cotler, Xiao-Liang Qi
quant-phcond-mat.str-elarXiv:2101.04634v22021Quantum Resources Required to Block-Encode a Matrix of Classical Data
B. David Clader, Alexander M. Dalzell, Nikitas Stamatopoulos +3
quant-pharXiv:2206.03505v12022Surface code off-the-hook: diagonal syndrome-extraction scheduling
Gilad Kishony, Austin Fowler
quant-pharXiv:2602.09099v12026Avoiding barren plateaus using classical shadows
Stefan H. Sack, Raimel A. Medina, Alexios A. Michailidis +2
quant-pharXiv:2201.08194v22022Benchmarking a trapped-ion quantum computer with 30 qubits
Jwo-Sy Chen, Erik Nielsen, Matthew Ebert +8
quant-pharXiv:2308.05071v22023Instantiating Microcrypt: Obstacles and opportunities via tailored state certification
Jose Carrasco, Jens Eisert, Soumik Ghosh +3
quant-phcs.CRarXiv:2609.15842v12026Regularized barycentric Rényi divergences
Milán Mosonyi
quant-phcs.ITmath-pharXiv:2609.17517v22026QNLP in Practice: Running Compositional Models of Meaning on a Quantum Computer
Robin Lorenz, Anna Pearson, Konstantinos Meichanetzidis +2
cs.CLcs.AIcs.LGarXiv:2102.12846v22021Time-evolution methods for matrix-product states
Sebastian Paeckel, Thomas Köhler, Andreas Swoboda +3
cond-mat.str-elcond-mat.stat-mechquant-pharXiv:1901.05824v32019Direct and Indirect Couplings in Coherent Feedback Control of Linear Quantum Systems
Guofeng Zhang, Matthew R. James
quant-pheess.SYmath.OCarXiv:1010.4369v22010An operational framework for nonlocality
Rodrigo Gallego, Lars E. Würflinger, Antonio Acín +1
quant-pharXiv:1112.2647v12011Quantum information processing with space-division multiplexing optical fibres
Guilherme B. Xavier, Gustavo Lima
quant-phphysics.ins-detphysics.opticsarXiv:1905.12644v22019Generalised quantum Stein's lemma more robust than ever
Filippo Girardi, Kuan-Yi Lee, Masahito Hayashi +1
quant-phcs.ITmath-pharXiv:2609.17309v12026Comment on 'Supervised quantum machine learning models are kernel methods'
Rajiv Krishnakumar
quant-pharXiv:2608.24923v12026Avoiding local minima in variational quantum eigensolvers with the natural gradient optimizer
David Wierichs, Christian Gogolin, Michael Kastoryano
quant-pharXiv:2004.14666v22020Strong converse for the quantum capacity of the pure-loss bosonic channel
Mark M. Wilde
quant-phcs.ITarXiv:2609.16608v12026AlphaSyndrome: Tackling the Syndrome Measurement Circuit Scheduling Problem for QEC Codes
Yuhao Liu, Shuohao Ping, Junyu Zhou +8
cs.ETquant-pharXiv:2601.12509v22026FTCircuitBench: A Benchmark Suite for Fault-Tolerant Quantum Compilation and Architecture
Adrian Harkness, Shuwen Kan, Chenxu Liu +10
quant-pharXiv:2601.03185v22026Quantum-Selected Configuration Interaction: classical diagonalization of Hamiltonians in subspaces selected by quantum computers
Keita Kanno, Masaya Kohda, Ryosuke Imai +4
quant-pharXiv:2302.11320v12023Robust shadow estimation
Senrui Chen, Wenjun Yu, Pei Zeng +1
quant-pharXiv:2011.09636v22020Fidelity-Guarantee Entanglement Routing in Quantum Networks
Jian Li, Mingjun Wang, Qidong Jia +4
quant-phcs.NIarXiv:2111.07764v42021Network Synthesis of Linear Dynamical Quantum Stochastic Systems
H. I. Nurdin, M. R. James, A. C. Doherty
quant-pharXiv:0806.4448v22008Low-depth gradient measurements can improve convergence in variational hybrid quantum-classical algorithms
Aram Harrow, John Napp
quant-phmath.OCarXiv:1901.05374v12019Architectural mechanisms of a universal fault-tolerant quantum computer
Dolev Bluvstein, Alexandra A. Geim, Sophie H. Li +20
quant-phcond-mat.quant-gasphysics.atom-pharXiv:2506.20661v12025An Efficient Methodology for Mapping Quantum Circuits to the IBM QX Architectures
Alwin Zulehner, Alexandru Paler, Robert Wille
quant-pharXiv:1712.04722v32017Quantum computational advantage using photons
Han-Sen Zhong, Hui Wang, Yu-Hao Deng +21
quant-phcond-mat.otherphysics.opticsarXiv:2012.01625v12020Summaries:한국어Deterministic multi-mode gates on a scalable photonic quantum computing platform
Mikkel V. Larsen, Xueshi Guo, Casper R. Breum +2
quant-phphysics.opticsarXiv:2010.14422v22020Open Quantum Assembly Language
Andrew W. Cross, Lev S. Bishop, John A. Smolin +1
quant-pharXiv:1707.03429v22017Assessing the progress of trapped-ion processors towards fault-tolerant quantum computation
A. Bermudez, X. Xu, R. Nigmatullin +12
quant-pharXiv:1705.02771v32017Complete 3-Qubit Grover Search on a Programmable Quantum Computer
C. Figgatt, D. Maslov, K. A. Landsman +3
quant-phcs.ETarXiv:1703.10535v12017