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20242026
most citedQuantum-Enhanced Sensing Enabled by Scrambling-Induced Genuine Multipartite Entanglement

1 citations · 1 across the 3 of their papers we have counts for

collaborators

8 papers

quant-ph2026

Programmable Dissipation via Partial Quantum Error Correction

Sameer Dambal, Michael AD Taylor, Yu Zhang

Noise is typically treated as the adversary of quantum information processing. For open quantum dynamics, however, dissipation is part of the target physics, creating a tension wit…

quant-ph2026

Generalized Bloch's Theorem for Cavity Exciton Polaron-Polaritons

Michael A. D. Taylor, Yu Zhang

We show that excitons coupled to cavity photons and phonons admit a generalized Bloch theorem when formulated for the conserved total crystal momentum. In minimal-coupling and Frö…

quant-ph20261 cited

Quantum-Enhanced Sensing Enabled by Scrambling-Induced Genuine Multipartite Entanglement

Guantian Hu, Wenxuan Zhang, Zhihua Chen +16

Quantum sensing leverages quantum resources to surpass the standard quantum limit, yet many existing protocols rely on the preparation of complex entangled states and Hamiltonian e…

quant-ph2025

A Fractional Calculus Framework for Open Quantum Dynamics: From Liouville to Lindblad to Memory Kernels

Bo Peng, Yu Zhang

Open quantum systems exhibit dynamics ranging from unitary evolution to irreversible dissipation. While the Gorini--Kossakowski--Sudarshan--Lindblad (GKSL) equation uniquely charac…

quant-ph2025

Noise-Induced Thermalization in Quantum Systems

Sameer Dambal, Yu Zhang, Eric R Bittner +1

In the current Noisy Intermediate-Scale Quantum era, noise is widely regarded as the primary obstacle to achieving fault-tolerant quantum computation. However, certain stages of th…

quant-ph2025

Harnessing Intrinsic Noise for Quantum Simulation of Open Quantum Systems

Sameer Dambal, Akira Sone, Yu Zhang

Simulating open quantum systems on quantum computers presents a fundamental challenge: open quantum dynamics are intrinsically nonunitary, whereas quantum computers operate through…