Squeezed states in phase-sensing interferometers
- 15 December 1984
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 30 (12) , 2548-2556
- https://doi.org/10.1103/physrevd.30.2548
Abstract
The performance of phase-sensing interferometers employing squeezed states and homodyne detection is analyzed and compared to the performance of systems employing direct detection. Standard differenced direct-detection Michelson and Mach-Zehnder interferometers are shown to be suboptimal in the sense that an observation/measurement-noise coupling occurs, which can degrade performance. Homodyne-detection interferometers in which the phase shift in one arm is the conjugate of that in the other arm do not suffer from the preceding drawback. Overall, however, the performance of differenced direct-detection and homodyne-detection interferometers is similar in single-frequency operation. In particular, both detection schemes reach the standard quantum limit on position-measurement sensitivity in single-frequency interferometric gravity-wave detectors at roughly the same average photon number. This limit arises from back action in the form of radiation pressure fluctuations entering through the energy-phase uncertainty principle. Multifrequency devices can circumvent this uncertainty principle, as illustrated by the conceptual design given for a two-frequency interferometer which can greatly surpass the standard quantum limit on position sensing. This configuration assumes that ideal photodetectors respond to photon flux rather than energy flux.Keywords
This publication has 11 references indexed in Scilit:
- Phase and amplitude uncertainties in heterodyne detectionIEEE Journal of Quantum Electronics, 1984
- Contractive States and the Standard Quantum Limit for Monitoring Free-Mass PositionsPhysical Review Letters, 1983
- Nonclassical effects in a two-photon laserPhysics Letters A, 1982
- Quantum-mechanical noise in an interferometerPhysical Review D, 1981
- Quantum-Mechanical Radiation-Pressure Fluctuations in an InterferometerPhysical Review Letters, 1980
- On the measurement of a weak classical force coupled to a quantum-mechanical oscillator. I. Issues of principleReviews of Modern Physics, 1980
- Optical communication with two-photon coherent states--Part III: Quantum measurements realizable with photoemissive detectorsIEEE Transactions on Information Theory, 1980
- Two-photon coherent states of the radiation fieldPhysical Review A, 1976
- States that give the maximum signal-to-quantum noise ratio for a fixed energyPhysics Letters A, 1976
- Phase and Angle Variables in Quantum MechanicsReviews of Modern Physics, 1968