Volta

Photonic Quantum Computing

[] · 2025
hash_id: a8559e176b1b960e1f75bdff3763ae8785dd7dfe0006d0e6254104ed58590772 · DOI: 10.1093/acrefore/9780190871994.013.84

Abstract Photonic quantum computation (QC) refers to QC that uses photons as the physical system for doing the QC. The field is largely divided between discrete-variable (DV) and continuous-variable (CV) photonic QC. In the former, quantum information is represented by one or more modal properties (e.g., polarization) that take on distinct values from a finite set. Quantum information is processed via operations on these modal properties (e.g., waveplates in the case of polarization) and eventually measured using single-photon detectors. In CV photonic QC, quantum information is represented by properties of the electromagnetic field that take on any value in an interval (e.g., position). Both CV and DV implementations have been realized experimentally; each has a unique set of challenges that …

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References (9)

Simulation of Quantum Computers: Review and Acceleration Opportunities primary
Modern Quantum Computing: Languages, Simulators, Architectures and Future Direc… primary
Half-Adder and Full-Adder Implementation with Continuous Variable Quantum Gates… primary
Some Applications of Quantum Photonic Technology primary
Applications of Gaussian Boson Sampling to Solve Some Chemistry Problems primary
我国高端光电仪器与装备产业发展全景与展望(特邀) primary
全球高端光电仪器与装备产业发展全景与展望(特邀) primary
Developing a universal logical state-purification strategy primary
A study of qubit modalities in contemporary quantum computing primary

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