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High‐Fidelity and Low‐Cost Hyperparallel Quantum Gates for Photon Systems via Λ‐Type Systems.

Authors :
Du, Fang‐Fang
Wu, Yi‐Ming
Fan, Gang
Ma, Zong‐Min
Source :
Annalen der Physik. Jan2023, Vol. 535 Issue 1, p1-10. 10p.
Publication Year :
2023

Abstract

Quantum gates designed with minimized resources overhead have a crucial role in quantum information processing. Here, based on the degrees of freedom (DoFs) of photons and Λ‐type atom systems, two high‐fidelity and low‐cost protocols are presented for realizing polarization‐spatial hyperparallel controlled‐not (CNOT) and Toffoli gates on photon systems with only two and four two‐qubit polarization–polarization swap (P‐P‐SWAP) gates in each DoF, respectively. Moreover, the quantum gates can be extended feasibly to construct 2m‐target‐qubit hyperparallel CNOT and 2n‐control‐qubit Toffoli gates required only 4m and 4n P‐P‐SWAP gates on (m+1)$(m+1)$‐ and (n+1)$(n+1)$‐photon systems, respectively, which dramatically lower the costs and bridge the divide between the theoretical lower bounds and the current optimal syntheses for the photonic quantum computing. Further, the unique auxiliary atom of these quantum gates can be regarded as a temporary quantum memory that requires no initialization and measurement, and is reused within the coherence time, as the state of the atom remains unchanged after the hyperparallel quantum computing. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00033804
Volume :
535
Issue :
1
Database :
Academic Search Index
Journal :
Annalen der Physik
Publication Type :
Academic Journal
Accession number :
161328942
Full Text :
https://doi.org/10.1002/andp.202200507