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2005 J. Opt. B: Quantum Semiclass. Opt. 7 S421-S428 doi: 10.1088/1464-4266/7/10/032 ![]()
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Abstract. Quantum optical states which have no coherent amplitude, such as squeezed vacuum states, cannot rely on standard readout techniques to generate error signals for control of the quadrature phase. Here we investigate the use of asymmetry in the quadrature variances to obtain a phase-sensitive readout and to lock the phase of a squeezed vacuum state, a technique which we call noise locking (NL). We carry out a theoretical derivation of the NL error signal and the associated stability of the squeezed and anti-squeezed lock points. Experimental data for the NL technique both in the presence and absence of coherent fields are shown, including a comparison with coherent locking techniques. Finally, we use NL to enable a stable readout of the squeezed vacuum state on a homodyne detector.
Keywords: non-classical light, quantum noise, readout techniques and control
Print publication: Issue 10 (October 2005)| Post to CiteUlike | | Post to Connotea | | Post to Bibsonomy |
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