most citedDesigning Fault-Tolerant Blind Quantum Computation

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quant-ph2025

Dressed-state Hamiltonian engineering in a strongly interacting solid-state spin ensemble

Haoyang Gao, Nathaniel T. Leitao, Siddharth Dandavate +7

In quantum science applications, ranging from many-body physics to quantum metrology, dipolar interactions in spin ensembles are controlled via Floquet engineering. However, this t…

quant-ph2025

Enhancing Optical Imaging via Quantum Computation

Aleksandr Mokeev, Babak Saif, Mikhail D. Lukin +1

Extracting information from weak optical signals is a critical challenge across a broad range of technologies. Conventional imaging techniques, constrained to integrating over dete…

quant-ph2025

Collective many-body dynamics in a solid-state quantum sensor controlled through nanoscale magnetic gradients

Piotr Put, Nathaniel T. Leitao, Haoyang Gao +13

Coherent collective dynamics of strongly interacting qubits are a central resource in quantum information science, with applications from quantum computing and simulation to metrol…

quant-ph20251 cited

Designing Fault-Tolerant Blind Quantum Computation

Gefen Baranes, Iria W. Wang, Francisco Machado +6

Blind quantum computing (BQC) is a computational paradigm that allows a client with limited quantum capabilities to delegate quantum computations to a more powerful server while ke…

quant-ph2025

Signal amplification in a solid-state quantum sensor via asymmetric time-reversal of many-body dynamics

Haoyang Gao, Leigh S. Martin, Lillian B. Hughes +8

Electronic spins of nitrogen vacancy (NV) centers in diamond constitute a promising system for micro- and nano-scale magnetic sensing, due to their operation under ambient conditio…

quant-ph2024

Universal distributed blind quantum computing with solid-state qubits

Yan-Cheng Wei, Pieter-Jan Stas, Aziza Suleymanzade +16

Blind quantum computing (BQC) is a promising application of distributed quantum systems, where a client can perform computations on a remote server without revealing any details of…