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SU(2) and SU(1,1) interferometers

Physical review. A, General physics · 1986 · Vol. 33(6) · pp. 4033–4054
Bernard YurkeSamuel L. McCallJohn R. Klauder

Abstract

A Lie-group-theoretical approach to the analysis of interferometers is presented. Conventional interferometers such as the Mach-Zehnder and Fabry-Perot can be characterized by SU(2). We introduce a class of interferometers characterized by SU(1,1). These interferometers employ active elements such as four-wave mixers or degenerate-parametric amplifiers in their construction. Both the SU(2) and SU(1,1) interferometers can in principle achieve a phase sensitivity \ensuremath{\Delta}\ensuremath{\varphi} approaching 1/N, where N is the total number of quanta entering the interferometer, provided that the light entering the input ports is prepared in a suitable quantum state. SU(1,1) interferometers can achieve this sensitivity with fewer optical elements.

Quantum Information and CryptographyPhotonic and Optical DevicesQuantum optics and atomic interactionsAstronomical interferometerPhysicsInterferometryDegenerate energy levelsSensitivity (control systems)Mach–Zehnder interferometerOpticsQuantum mechanicsElectronic engineering
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References
New formalism for two-photon quantum optics. I. Quadrature phases and squeezed states
Physical review. A, General physics · 1985 · 864 citations
Quantum-mechanical noise in an interferometer
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