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Qudit-based high-dimensional controlled-not gate

delete2024-02-23
delete28
PRE
AI
F
Fang‐Fang Du *
任雪梅 (Xuemei Ren)
M
Ming Ma
G
Gang Fan
DOI:10.1364/OL.518336delete
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Abstract

Abstract

En 中文
High-dimensional quantum systems expand quantum channel capacity and information storage space. By implementing high-dimensional quantum logic gates, the speed of quantum computing can be practically enhanced. We propose a deterministic 4 x 4-dimensional controlled-not (CNOT) gate for a hybrid system without ancillary qudits required, where the spatial and polarization states of a single photon serve as a control qudit of four dimensions, whereas two electron-spin states in nitrogen-vacancy (NV) centers act as a four-dimensional target qudit. As the control qudits are easily operated employing simple optical elements and the target qudits are available for storage, the CNOT gate works in a deterministic way, and it can be flexibly extended to n x n-dimensional (n > 4) quantum gates for other hybrid systems or different photonic degrees of freedoms. The efficiency and fidelity of the CNOT gate are analyzed aligning with current technological capabilities, finding that they have satisfactory performances. (c) 2024 Optica Publishing
Keywords:
QUANTUM
UNIVERSAL
PHOTON

Journal

Optics Letters cover
Optics Letters
IF:
3.3
Papers:
4.0W
Citations:
7.6W

Organization

N
North University of China
Scholars:
1.1W
Papers: 6.9K
Citations: 7.7K