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20232026
most citedNonlinear optical response in kagome lattice with inversion symmetry breaking

4 citations · 8 across the 27 of their papers we have counts for

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quant-ph2026

Resolving Structure in Prethermal Floquet Dynamics with Precision Quantum Computation

Eyal Leviatan, Tasneem Watad, Roy Perry +38

Periodically driven interacting quantum many-body systems can exhibit long-lived prethermal dynamics, where local observables retain coherent structure even as entanglement and ope…

quant-ph2026

Simulating the Dynamics of Markovian Quantum Processes by Quantum Collision Models on Quantum Computers

Zeqing Wang, Julian D. Teske, Anshuman Bhardwaj +2

Hamiltonian dynamics have been widely implemented on noisy intermediate-scale quantum devices in recent years. In contrast, experimental demonstrations of Markovian quantum dynamic…

quant-ph2026

Filter-assisted quantum subspace diagonalization via wavefunction sparsity engineering

Han Xu, Tomonori Shirakawa, Seiji Yunoki

Subspace diagonalization techniques based on quantum sampling, such as quantum selected configuration interaction (QSCI) and sample-based quantum diagonalization (SQD), have recent…

quant-ph2026

Noise and Configuration Recovery Impact on Quantum Selected Configuration Interaction

Nonia Vaquero-Sabater, Abel Carreras, Lukas Broers +3

Quantum-selected configuration interaction (QSCI) is a promising hybrid quantum-classical approach in which a quantum device generates configurations for subsequent classical diago…

quant-ph2026

High-Precision Variational Quantum SVD via Classical Orthogonality Correction

Shohei Miyakoshi, Takanori Sugimoto, Tomonori Shirakawa +2

Evaluating the entanglement spectrum is essential for characterizing exotic quantum phases such as quantum criticality and topological order. However, for large quantum many-body s…

quant-ph20261 cited

Crossing the 12,000-atom barrier with heterogeneous quantum-classical supercomputing: quantum chemistry of protein-ligand complexes

Kenneth M. Merz, Akhil Shajan, Danil Kaliakin +21

We develop a workflow decomposing a molecule into fragments via quantum embedding and simulating them with a heterogeneous quantum-classical (HQC) method. We sample fragment electr…