activity
20232026
most citedEncoded-Fusion-Based Quantum Computation for High Thresholds with Linear Optics

14 citations · 45 across the 14 of their papers we have counts for

collaborators
Showing 2024 · quant-phShow all

6 papers · 2 filters

quant-ph2024★ 4 cited

Robust and bright polarization-entangled photon sources exploiting non-critical phase matching without periodic poling

Ilhwan Kim, Yosep Kim, Yong-Su Kim +2

Entangled photon sources are essential for quantum information applications, including quantum computation, quantum communication, and quantum metrology. Periodically poled (PP) cr…

quant-ph2024★ 14 cited

Encoded-Fusion-Based Quantum Computation for High Thresholds with Linear Optics

Wooyeong Song, Nuri Kang, Yong-Su Kim +1

We propose a fault-tolerant quantum computation scheme in a measurement-based manner with finite-sized entangled resource states and encoded fusion scheme with linear optics. The e…

quant-ph2024

Implementation of CU gates and its application in a remote-controlled quantum operation

Byungjoo Kim, Seongjin Hong, Yong-Su Kim +2

Recently, remote-controlled quantum information processing has been proposed for its applications in secure quantum processing protocols and distributed quantum networks. For remot…

quant-ph2024

Entanglement swapping via lossy channels using photon-number-encoded states

Wan Zo, Bohdan Bilash, Donghwa Lee +5

Entanglement shared between distant parties is a key resource in quantum networks. However, photon losses in quantum channels significantly reduce the success probability of entang…

quant-ph2024★ 4 cited

Photonic variational quantum eigensolver using entanglement measurements

Jinil Lee, Wooyeong Song, Donghwa Lee +6

Variational quantum eigensolver (VQE), which combines quantum systems with classical computational power, has been arisen as a promising candidate for near-term quantum computing a…

quant-ph2024★ 12 cited

Optimal multiple-phase estimation with multi-mode NOON states against photon loss

Min Namkung, Dong-Hyun Kim, Seongjin Hong +3

Multi-mode NOON states can quantum-enhance multiple-phase estimation in the absence of photon loss. However, a multi-mode NOON state is known to be vulnerable to photon loss, and i…