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Papers

Live trends in quantum computing research, updated daily from arXiv.

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28,088 papers found

Anomalies on the Lattice, Homotopy of Quantum Cellular Automata, and a Spectrum of Invertible States

Alexander M. Czajka, Roman Geiko, Ryan Thorngren·Dec 1, 2025

We develop a rigorous topological theory of anomalies on the lattice, which are obstructions to gauging global symmetries and the existence of trivial symmetric states. We also construct $Ω$-spectra of a class of invertible states and quantum cellula...

cond-mat.str-elhep-thMathematical PhysicsQuantum Physics

The measurement-induced phase transition in strongly disordered spin chains

Yicheng Tang, Pradip Kattel, Arijeet Pal +2 more·Dec 1, 2025

We investigate the dynamics of strongly disordered spin chains in the presence of random local measurements. By studying the transverse-field Ising model with a site-dependent random longitudinal field and an effective $l$-bit many-body localized Ham...

cond-mat.dis-nncond-mat.stat-mechQuantum Physics

Parametric processes in nonlinear structures with reflections: an asymptotic-field approach

Tadeu Tassis, Salvador Poveda-Hospital, Nicolás Quesada +1 more·Dec 1, 2025

The generation of engineered quantum states of light via nonlinear processes is fundamental for quantum technologies based on photons. Although embedding nonlinear materials within resonant structures allows for the enhancement and tailoring of photo...

Quantum Physics

A Heptalemma for Quantum Mechanics

John B. DeBrota, Christian List·Dec 1, 2025

We present a seven-pronged no-go result for quantum mechanics: a "heptalemma". It shows that seven initially plausible theses about physical reality are jointly inconsistent with the predictions of quantum mechanics, while any six are jointly consist...

Quantum Physicsphysics.hist-ph

A List of Complexity Bounds for Property Testing by Quantum Sample-to-Query Lifting

Kean Chen, Qisheng Wang, Zhicheng Zhang·Dec 1, 2025

Quantum sample-to-query lifting, a relation between quantum sample complexity and quantum query complexity presented in Wang and Zhang (SIAM J. Comput. 2025), was significantly strengthened by Tang, Wright, and Zhandry (2025) to the case of state-pre...

Quantum PhysicsComplexitycs.IT

Random matrix perspective on probabilistic error cancellation

Leonhard Moske, Pedro Ribeiro, Tomaž Prosen +3 more·Dec 1, 2025

Probabilistic error cancellation is an attempt to reverse the effect of dissipative noise channels on quantum computers by applying unphysical channels after the execution of a quantum algorithm on noisy hardware. We investigate on general grounds th...

Quantum Physicscond-mat.stat-mech

Automated Compilation Including Dropouts: Tolerating Defective Components in Stabiliser Codes

Stasiu Wolanski·Dec 1, 2025

Utility-scale solid-state quantum devices will need to fabricate quantum devices at scale using imperfect processes. By introducing tolerance to fabrication defects into the design of the quantum devices, we can improve the yield of usable quantum ch...

Quantum Physics

High-Speed NV Ensemble Magnetic Field Imaging via Laser Raster Scanning

Luca Troise, Nikolaj W. Hansen, Marvin Holten +4 more·Dec 1, 2025

We present a technique that uses an ensemble of nitrogen-vacancy (NV) centers in diamond to image magnetic fields with high spatio-temporal resolution and sensitivity. A focused laser beam is raster-scanned using an acousto-optic deflector (AOD) and ...

physics.app-phQuantum Physics

Scalable Quantum Reversible BCD Adder Architectures with Enhanced Speed and Reduced Quantum Cost for Next-Generation Computing

Negin Mashayekhi, Mohammad Reza Reshadinezhad, Antonio Rubio +1 more·Dec 1, 2025

The quantum and reversible paradigm merges the principles of quantum mechanics and reversible computation to enable information-preserving processing. It supports next-generation computing architectures that provide improved scalability and enhanced ...

Quantum Physics

On-chip high-order parametric downconversion in the excitonic Mott insulator Nb$_3$Cl$_8$ for programmable multiphoton entangled states

Dmitry Skachkov, Dirk R. Englund, Michael N. Leuenberger·Dec 1, 2025

Spontaneous parametric downconversion (SPDC) and four-wave mixing in $χ^{(2)}$ and $χ^{(3)}$ media underpin most entangled-photon sources, but direct generation of higher-order entangled multiphoton states by $n$-th order parametric downconversion re...

cond-mat.mtrl-sciQuantum Physics

Approximate pushforward designs and image bounds on approximations

Jakub Czartowski, Adam Sawicki, Karol Życzkowski·Dec 1, 2025

We extend the framework of quantum pushforward designs to the approximate setting, where averaging is achieved only up to finite precision. Using Schatten $p$-norms and Lipschitz continuity arguments, we derive bounds on the approximation parameters ...

Quantum PhysicsMathematical Physics

A Fluctuation-Dissipation Structure of Quantum Dynamical Semigroups Reveals a Unique Internal Hamiltonian

Fabricio Toscano, Sergey Sergeev·Dec 1, 2025

We refine a fluctuation-dissipation framework for quantum dynamical semigroups to resolve a long-standing ambiguity in Markovian master equations. For finite-dimensional systems, we prove that the underlying diffusion-dissipation structure - rooted i...

Quantum Physics

Confinement-Induced Resonances in Rabi-Coupled Bosonic Mixtures

Andrea Tononi, Pietro Massignan·Dec 1, 2025

We consider coherently-coupled bosonic mixtures scattering at low energies in the presence of an external confinement along either one or two directions. We exactly solve the two-body scattering problem, showing that for large Rabi coupling the confi...

cond-mat.quant-gasQuantum Physics

QGShap: Quantum Acceleration for Faithful GNN Explanations

Haribandhu Jena, Jyotirmaya Shivottam, Subhankar Mishra·Dec 1, 2025

Graph Neural Networks (GNNs) have become indispensable in critical domains such as drug discovery, social network analysis, and recommendation systems, yet their black-box nature hinders deployment in scenarios requiring transparency and accountabili...

Quantum PhysicsAIcs.LG

Achievable Identification Rates in Noisy Bosonic Broadcast Channels

Zuhra Amiri, Janis Nötzel·Dec 1, 2025

Identification in quantum communication enables receivers to verify the presence of a message without decoding its entire content. While identification capacity has been explored for classical and finite-dimensional quantum channels, its behaviour in...

Quantum Physics

Anomalous Eigenstates of a Doped Hole in the Ising Antiferromagnet

Piotr Wrzosek, Krzysztof Wohlfeld, Eugene A. Demler +2 more·Dec 1, 2025

The problem of a mobile hole doped into an antiferromagnet Mott insulator is believed to underly the rich physics of several paradigmatic strongly correlated electron systems, ranging from heavy fermions to high-Tc superconductivity. Arguably the sim...

cond-mat.str-elcond-mat.quant-gasQuantum Physics

Benchmarking Distributed Quantum Computing Emulators

Guillermo Díaz-Camacho, Iago F. Llovo, F. Javier Cardama +7 more·Dec 1, 2025

Scalable quantum computing requires architectural solutions beyond monolithic processors. Distributed quantum computing (DQC) addresses this challenge by interconnecting smaller quantum nodes through quantum communication protocols, enabling collabor...

Quantum Physics

Role of qubits in quantum entanglement and quantum teleportation

Laure Gouba·Dec 1, 2025

A qubit is an exhibition of quantum entanglement and a key element in the quantum teleportation process. In this paper, we review the role of qubits in quantum entanglement and quantum teleportation.

Quantum Physics

Hybrid Quantum State Preparation via Data Compression

Emad Rezaei Fard Boosari, Maryam Afsary·Dec 1, 2025

Quantum state preparation (QSP) for a general $n$-qubit state requires $O(2^n)$ CNOT gates and circuit depth, making exact amplitude encoding (EAE) impractical for near-term quantum hardware. We introduce an ancilla-free hybrid classical-quantum stra...

Quantum Physics

Efficient Time Evolution of 2D Open-Quantum Lattice Models with Long-Range Interactions using Tensor Networks

Jack Dunham, Marzena H. Szymańska·Dec 1, 2025

Simulating many-body open quantum systems is an extremely challenging problem, with methods often restricted to either models with nearest-neighbor interactions or semi-classical approximations. In particular, modeling two-dimensional systems with re...

Quantum Physics
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