All three-qubit biconditional-parity nonlocality paradoxes are classified by valid Charlie clocks plus canonical Alice–Bob coset completions and layer shifts; new exotic and non-interpolant examples exist.
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Moir´e polar vortex, flat bands, and lieb lattice in twisted bilayer batio3,
Canonical reference. 100% of citing Pith papers cite this work as background.
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quant-ph 16 cond-mat.mtrl-sci 5 cond-mat.soft 5 cond-mat.str-el 3 physics.optics 3 cond-mat.supr-con 2 physics.atom-ph 2 physics.chem-ph 2 astro-ph.IM 1 cond-mat.mes-hall 1roles
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EXIDOS achieves chemical accuracy for multiple excited states in small molecules by variational optimization of low-energy subspaces using non-orthogonal Slater determinants without explicit orthogonality or symmetry constraints.
Inverted-mode STM achieves controlled C2 donation to pre-patterned sites on hydrogenated Si(100), enabling single-site, multi-site, and stepwise polyyne assembly.
A local SU(2) symmetry-based product formula clusters Hamiltonian terms into at most four classes for exact two-qubit implementations, cutting commutator errors and gate count in many-body simulations.
Sequence Search uses neural architecture search and a differentiable Bloch simulator to automatically create and optimize MRI pulse sequences that satisfy given design goals.
First experimental measurement of the D1 magic wavelength in 40K at 1227.54(3) nm via tunable optical tweezer loss spectroscopy.
Relativistic Maxwell-Bloch equations are derived showing that radiating system response and coherence between emitters are preserved across reference frames, with timescales and intensity transforming as expected relativistically.
Micromagnetic simulations of magnetoelastic coupling in exchange-decoupled Co/Ni islets predict a 52 dB/mm change in SAW transmission at 3.8 GHz depending on the magnetic state of neighboring islets.
Active supercoiling induction in plasmid suspensions creates branched conformations and locks threaded entanglements into slowly relaxing clusters.
DeepH-E3 machine learning predicts that twisting bilayer SrTiO3 flattens valence bands and enhances nonlinear optical responses (SHG, shift current) while leaving linear dielectric and spin Hall responses largely unchanged.
A modular end-to-end simulation framework jointly models surface-code operations, QPU connectivity, and network constraints to produce execution latency and logical error rate estimates, revealing network-dependent operating regimes for distributed quantum computing.
Occupational AI exposure is bipolar — physical execution and planning/design are opposite poles around a low-contrast middle — and the pole identities inverted between the 2013 and LLM eras.
One-dimensional bosons in tilted optical lattices show two-mode collapse and revival with frequencies from both interaction and tilt, enabled by tunneling, plus universal amplitude scaling when modes coexist.
Displaced GBS enhances max-clique search success under loss or low squeezing and scales to large graphs with modest overhead.
Local-field terms and induced polarization in both MD trajectories and the optical response model are required to reproduce experimental TKE birefringence trends in aqueous MgCl2.
A three-state opinion model on a network of networks finds that star-like internal belief topologies raise the critical temperature for polarized consensus destabilization more than chain or clique topologies, with regime-dependent behavior in mixed populations.
Machine-learning adaptive Slater-Koster tables in DFTB reach 95% band-structure accuracy across Ni-O compositions by assigning oxidation-state-specific parameters.
Mirror-mediated time-delayed self-feedback in polariton condensates creates coherence revivals at integer multiples of the delay for long delays and nearly doubles coherence time for short delays by suppressing phase diffusion.
Topochemical fluorination of La2NiO4+δ single crystals inserts fluorine via intercalation and surface exchange, inducing a previously unreported superstructure and altered magnetic ordering while keeping the crystal framework intact.
Grafting block copolymers on capacitive deionization electrodes substantially boosts desalination performance according to density functional theory and Monte Carlo simulations.
New structural conditions on affine permutation matrices yield ultra-high-rate quantum LDPC codes (rate >1/2) with near-teraquop logical error rates under circuit-level noise on reconfigurable atom arrays.
A history-dependent 'source-compensated' magnetic helicity density, conserved by construction, yields an approximately constant correlation plateau consistent with BL ~ const decay in 2D3V kinetic turbulence.
A new encoding scheme for exp(-iθP) into stabilizer codes like [[n,n-2,2]] and [[5,1,3]] achieves 4-7x lower noise than unencoded versions with at most 3% runs discarded after postselection.
Hierarchical clustered decomposition plus local repair lets standard QAOA solve 13-node two-vehicle VRP instances using 12 qubits per subproblem with approximation ratios 1.2-1.5 versus Gurobi.
citing papers explorer
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Three-qubit nonlocality paradoxes: beyond GHZ
All three-qubit biconditional-parity nonlocality paradoxes are classified by valid Charlie clocks plus canonical Alice–Bob coset completions and layer shifts; new exotic and non-interpolant examples exist.
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Variational low-energy subspaces for chemically accurate excited states
EXIDOS achieves chemical accuracy for multiple excited states in small molecules by variational optimization of low-energy subspaces using non-orthogonal Slater determinants without explicit orthogonality or symmetry constraints.
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Atomically precise mechanosynthesis of carbon structures on hydrogenated Si(100) by inverted-mode STM
Inverted-mode STM achieves controlled C2 donation to pre-patterned sites on hydrogenated Si(100), enabling single-site, multi-site, and stepwise polyyne assembly.
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Beyond Commutativity: Redesigning Trotter Decomposition via Local Symmetry
A local SU(2) symmetry-based product formula clusters Hamiltonian terms into at most four classes for exact two-qubit implementations, cutting commutator errors and gate count in many-body simulations.
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Sequence Search: Automated Sequence Design using Neural Architecture Search
Sequence Search uses neural architecture search and a differentiable Bloch simulator to automatically create and optimize MRI pulse sequences that satisfy given design goals.
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Experimental Determination of the $D1$ Magic Wavelength for $^{40}$K
First experimental measurement of the D1 magic wavelength in 40K at 1227.54(3) nm via tunable optical tweezer loss spectroscopy.
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Relativistic Maxwell-Bloch Equations with Applications to Astrophysics
Relativistic Maxwell-Bloch equations are derived showing that radiating system response and coherence between emitters are preserved across reference frames, with timescales and intensity transforming as expected relativistically.
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Magnetically Programmable Surface Acoustic Wave Filters: Device Concept and Predictive Modeling
Micromagnetic simulations of magnetoelastic coupling in exchange-decoupled Co/Ni islets predict a 52 dB/mm change in SAW transmission at 3.8 GHz depending on the magnetic state of neighboring islets.
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Actively induced supercoiling can slow down plasmid solutions by trapping the threading entanglements
Active supercoiling induction in plasmid suspensions creates branched conformations and locks threaded entanglements into slowly relaxing clusters.
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Deep-learning Hamiltonian reveals twist-tunable flat bands and nonlinear photocurrents in SrTiO3 moire bilayers
DeepH-E3 machine learning predicts that twisting bilayer SrTiO3 flattens valence bands and enhances nonlinear optical responses (SHG, shift current) while leaving linear dielectric and spin Hall responses largely unchanged.
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Impact of Network Constraints on Fault-Tolerant Distributed Quantum Computing
A modular end-to-end simulation framework jointly models surface-code operations, QPU connectivity, and network constraints to produce execution latency and logical error rate estimates, revealing network-dependent operating regimes for distributed quantum computing.
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The atomic structure of work: a micro-action instrument reveals two-pole AI occupational exposure and its decade-scale polar inversion
Occupational AI exposure is bipolar — physical execution and planning/design are opposite poles around a low-contrast middle — and the pole identities inverted between the 2013 and LLM eras.
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Two-mode collapse and revival of quantum coherent state in a tilted optical lattice
One-dimensional bosons in tilted optical lattices show two-mode collapse and revival with frequencies from both interaction and tilt, enabled by tunneling, plus universal amplitude scaling when modes coexist.
-
Displaced Gaussian Boson Sampling for enhanced max-clique search
Displaced GBS enhances max-clique search success under loss or low squeezing and scales to large graphs with modest overhead.
-
Terahertz-induced local-field dynamics and transient birefringence in aqueous electrolytes
Local-field terms and induced polarization in both MD trajectories and the optical response model are required to reproduce experimental TKE birefringence trends in aqueous MgCl2.
-
Equilibrium and dynamics of a three-state opinion model on a network of networks
A three-state opinion model on a network of networks finds that star-like internal belief topologies raise the critical temperature for polarized consensus destabilization more than chain or clique topologies, with regime-dependent behavior in mixed populations.
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Adaptive Slater Koster Parameters: Crossing Oxidation States with Density Functional Tight Binding
Machine-learning adaptive Slater-Koster tables in DFTB reach 95% band-structure accuracy across Ni-O compositions by assigning oxidation-state-specific parameters.
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Coherence Revivals and Lifetime Extension of Polariton Condensates by Mirror-Mediated Self-Feedback
Mirror-mediated time-delayed self-feedback in polariton condensates creates coherence revivals at integer multiples of the delay for long delays and nearly doubles coherence time for short delays by suppressing phase diffusion.
-
Topochemical Fluorination of La$_2$NiO$_{4+\delta}$ Single Crystals
Topochemical fluorination of La2NiO4+δ single crystals inserts fluorine via intercalation and surface exchange, inducing a previously unreported superstructure and altered magnetic ordering while keeping the crystal framework intact.
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Improved Desalination by Polymer Grafting
Grafting block copolymers on capacitive deionization electrodes substantially boosts desalination performance according to density functional theory and Monte Carlo simulations.
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Towards Ultra-High-Rate Quantum Error Correction with Reconfigurable Atom Arrays
New structural conditions on affine permutation matrices yield ultra-high-rate quantum LDPC codes (rate >1/2) with near-teraquop logical error rates under circuit-level noise on reconfigurable atom arrays.
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Kinetic route to helicity-constrained decay
A history-dependent 'source-compensated' magnetic helicity density, conserved by construction, yields an approximately constant correlation plateau consistent with BL ~ const decay in 2D3V kinetic turbulence.
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Protection of Exponential Operation using Stabilizer Codes in the Early Fault Tolerance Era
A new encoding scheme for exp(-iθP) into stabilizer codes like [[n,n-2,2]] and [[5,1,3]] achieves 4-7x lower noise than unencoded versions with at most 3% runs discarded after postselection.
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Hierarchical QAOA for the Vehicle Routing Problem via Clustered Decomposition and Local Feasibility Repair
Hierarchical clustered decomposition plus local repair lets standard QAOA solve 13-node two-vehicle VRP instances using 12 qubits per subproblem with approximation ratios 1.2-1.5 versus Gurobi.
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Accelerating Fault-Tolerant Quantum Computation with Good qLDPC Codes
A new scheme for fault-tolerant quantum computation on qLDPC codes achieves constant qubit overhead and time overhead O(d^{1+o(1)}) for good codes, faster than prior code surgery methods for a<2.
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Agentic Artificial Intelligence for Multistage Physics Experiments at a Large-Scale User Facility Particle Accelerator
A language-model 'Accelerator Assistant' autonomously ran a complete insertion-device hysteresis experiment at a production synchrotron, reporting a ~100x preparation-time speedup.
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Quantum-inspired dynamical models on quantum and classical annealers
A parallel-in-time encoding turns quantum dynamical propagators into QUBO instances for direct benchmarking of quantum annealers against classical solvers on models from single-qubit rotations to PT-symmetric systems.
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Nonlinear-enhanced wideband sensing via subharmonic excitation of a quantum harmonic oscillator
Reports experimental measurement of RF signal frequency at 7e-9 fractional uncertainty using subharmonic excitation in a single Ca ion quantum harmonic oscillator, claimed as most precise with this platform.
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Active Hydrodynamic Theory of Euchromatin and Heterochromatin
A hydrodynamic framework shows contractile cross-linker stresses cause mechanically driven heterochromatin phase separation into droplets that wet the nuclear boundary, while active transcription fluctuations drive long-range coherent chromatin motions and deform the droplets.
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Active assembly and non-reciprocal dynamics of elastic membranes
Adhesive non-thermal fibers in active fluid assemble into elastic membranes exhibiting global limit cycles due to non-reciprocal coupling between deformations and polar alignment.
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Probing anyonic statistics via Mach-Zehnder interferometry in quantum computers
Synthetic Mach-Zehnder interferometer on IonQ quantum computer probes anyonic statistics via electric excitation paths in toric ladder, with interference matching Lindbladian noise model.
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Production of Magic States via $Z$ Bosons and Dark Photons
Magic distributions are computed for EW processes (reproducing QED at low energy, new at high energy/Z resonance) and dark-sector scatterings, reaching maximal magic at mass ratios m_f/m_χ → 0 and → 1.83929.
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Dynamic Topological Light Control in Reconfigurable Non-Hermitian Metastacks
A non-Hermitian metastack with VO2 uses thermal hysteresis to tune topological interface states and path-dependent exceptional points, achieving reversible 8% spectral shifts and near-unity reflectance modulation.
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Room-Temperature Electric-Field Control of Anomalous Hall Effect in Py/BTO/LSMO Heterostructures
Py/BTO/LSMO heterostructures enable room-temperature voltage tuning of anomalous Hall effect via ferroelectric polarization coupling to interfacial magnetism, achieving 93% modulation and Rashba splitting per DFT.
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Ligand-mediated Origin of Altermagnetic Spin-Splitting
First-principles and tight-binding analysis shows ligand-assisted coupling dominates altermagnetic spin-splitting in Co1/4NbSe2.
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Phonon-bottlenecked spin relaxation of Er$^{3+}$:CaWO$_4$ at milliKelvin temperatures
Experimental observation of phonon-bottlenecked spin relaxation in Er^{3+}:CaWO_{4} at milliKelvin temperatures detected via superconducting resonator coupling.
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Viscous Settling of Bravais Unit-Cells
Bravais lattice units settle with speed U proportional to solid fraction phi to the power 0.43 in a container (0.30 unbounded) under Stokes flow.
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Universal Quartic Scaling Law for Kerr-Type Interactions: Projection-Law Factorization Across Nonlinear Quantum Platforms
Kerr-type interactions factorize into a dimensionless projection coefficient and an intrinsic quartic energy scale from canonical quantization of quartic potentials projected onto finite normal-mode bases, with cross-platform experimental agreement.
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Ultrafast Current Switching from Quantum Geometry in Semimetals
Quantum geometric semimetals produce instantaneous steady-state current under electric fields via interband coupling from Hilbert-Schmidt quantum distance and finite density of states at band-touching points, outperforming metals, semiconductors, and graphene in switching speed.
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Harnessing Non-convex Quantum Correlations of Independent Qubits
Derives state-independent consistency tests for qubit correlations from uncertainty relations that capture non-convex boundaries and enable device inference plus strengthened separability tests.
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From spin squeezing to fast state discrimination
In the large-N limit, spin squeezing torsion yields a nonlinear qubit governed by the two-state Gross-Pitaevskii equation that solves single-input state discrimination on the Bloch sphere.
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Bloom Filter Encoding for Machine Learning
Bloom filter encodings convert data samples to bit arrays that support comparable classifier performance to raw data across text, time-series, tabular, and image datasets while delivering consistent memory savings.
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Fast Radio Burst Injection Tests
All missed high-S/N FRB injections from the Molonglo search are explained by noise, labeling errors, analysis cuts, S/N miscalculations, and RFI with no fundamental pipeline failure required.
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Journey in quantum metrology and sensing from foundations to applications: a review
A review covering frequentist and Bayesian parameter estimation, multiparameter cases, noisy and indefinite-causal-order channels, error-correction strategies, quantum Fisher information, and applications from many-body sensors to atomic clocks and imaging.
- Orbital-Selective Diagonal-Gap Test of Pairing in La$_3$Ni$_2$O$_7$
- Unfolding unstable skyrmionic polarization textures
- Algebraic Criterion and Graph-Theoretic Construction of Intrinsic Superconducting Diode Effects
- Q-ball mechanism of electron transport and spin/phonon excitations properties of high-T$_c$ superconductors