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20242026
most citedEfficient and high-performance routing of lattice-surgery paths on three-dimensional lattice

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

collaborators

11 papers

quant-ph2026

-Party Hadamard Test for Distributed Quantum Computation

Kaoru Yamamoto, Yuichiro Matsuzaki, Yasunari Suzuki +2

Quantum computers promise computational advantages over classical computers, but hardware-imposed limitations remain a major obstacle. The Hadamard test mitigates these limitations…

quant-ph20262 cited

Efficient and high-performance routing of lattice-surgery paths on three-dimensional lattice

Kou Hamada, Yasunari Suzuki, Yuuki Tokunaga

Encoding logical qubits with surface codes and performing multi-qubit logical operations with lattice surgery is one of the most promising approaches to demonstrate fault-tolerant…

quant-ph20261 cited

Logical entanglement distribution between distant 2D array qubits

Yuya Maeda, Yasunari Suzuki, Toshiki Kobayashi +3

Sharing logical entangled pairs between distant quantum nodes is a key process to achieve fault tolerant quantum computation and communication. However, there is a gap between curr…

quant-ph2026

Addressing requirements for crosstalk-free quantum-gate operation in many-body nanofiber cavity QED systems

Tim Keller, Seigo Kikura, Rui Asaoka +3

A distributed network architecture in which flying photons connect individual modules containing stationary atomic qubits is a promising approach for scaling up neutral-atom based…

quant-ph2026

Unitary-transformed projective squeezing: applications for circuit-knitting and state-preparation of non-Gaussian states

Keitaro Anai, Yasunari Suzuki, Yuuki Tokunaga +3

Continuous-variable (CV) quantum computing is a promising candidate for quantum computation because it can, even with one mode, utilize infinite-dimensional Hilbert spaces and can…

quant-ph2025

Density matrix representation of hybrid tensor networks for noisy quantum devices

Hiroyuki Harada, Yasunari Suzuki, Bo Yang +2

The hybrid tensor network (HTN) method is a general framework allowing for the construction of an effective wavefunction with the combination of classical tensors and quantum tenso…