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20162022
most citedOptical holonomic single quantum gates with a geometric spin under a zero field

161 citations · 183 across the 5 of their papers we have counts for

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quant-ph2022

Deterministic Bell state measurement with a single quantum memory

Akira Kamimaki, Keidai Wakamatsu, Kosuke Mikata +2

Any quantum information system operates with entanglement as a resource, which should be deterministically generated by a joint measurement known as complete Bell state measurement…

quant-ph20221 cited

Backward propagating quantum repeater protocol with multiple quantum memories

Yuhei Sekiguchi, Satsuki Okumura, Hideo Kosaka

Quantum repeaters with multiple quantum memories provide high throughput, low latency, and high fidelity quantum state (qubit) transfer over long distances. However, conventional q…

quant-ph20221 cited

Remote Entanglement of Superconducting Qubits via Solid-State Spin Quantum Memories

Hodaka Kurokawa, Moyuki Yamamoto, Yuhei Sekiguchi +1

Quantum communication between remote superconducting systems is being studied intensively to increase the number of integrated superconducting qubits and to realize a distributed q…

quant-ph202020 cited

Dynamical decoupling of a geometric qubit

Yuhei Sekiguchi, Yusuke Komura, Hideo Kosaka

Quantum bits or qubits naturally decohere by becoming entangled with uncontrollable environments. Dynamical decoupling is thereby required to disentangle qubits from an environment…

quant-ph2017161 cited

Optical holonomic single quantum gates with a geometric spin under a zero field

Yuhei Sekiguchi, Naeko Niikura, Ryota Kuroiwa +2

Realization of fast fault-tolerant quantum gates on a single spin is the core requirement for solid-state quantum-information processing. As polarized light shows geometric interfe…

quant-ph2016

Geometric spin echo under zero field

Yuhei Sekiguchi, Yusuke Komura, Shota Mishima +3

Spin echo is a fundamental tool for quantum registers and biomedical imaging. It is believed that a strong magnetic field is needed for the spin echo to provide long memory and hig…