Phase estimation for thermal Gaussian states

dc.contributor.author
Aspachs Bracons, Mariona
dc.contributor.author
Calsamiglia Costa, John
dc.contributor.author
Muñoz Tapia, Ramon
dc.contributor.author
Bagán Capella, Emili
dc.date.issued
2009
dc.identifier
https://ddd.uab.cat/record/115620
dc.identifier
urn:10.1103/PhysRevA.79.033834
dc.identifier
urn:oai:ddd.uab.cat:115620
dc.identifier
urn:recercauab:ARE-46036
dc.identifier
urn:articleid:10502947v79n3p33834-1
dc.identifier
urn:scopus_id:63849218315
dc.identifier
urn:wos_id:000264770200195
dc.identifier
urn:oai:egreta.uab.cat:publications/2d2c67ae-9799-4a50-aaf9-696a308043f6
dc.description.abstract
We give the optimal bounds on the phase-estimation precision for mixed Gaussian states in the single-copy and many-copy regimes. Specifically, we focus on displaced thermal and squeezed thermal states. We find that while for displaced thermal states an increase in temperature reduces the estimation fidelity, for squeezed thermal states a larger temperature can enhance the estimation fidelity. The many-copy optimal bounds are compared with the minimum variance achieved by three important single-shot measurement strategies. We show that the single-copy canonical phase measurement does not always attain the optimal bounds in the many-copy scenario. Adaptive homodyning schemes do attain the bounds for displaced thermal states, but for squeezed states they yield fidelities that are insensitive to temperature variations and are, therefore, suboptimal. Finally, we find that heterodyne measurements perform very poorly for pure states but can attain the optimal bounds for sufficiently mixed states. We apply our results to investigate the influence of losses in an optical metrology experiment. In the presence of losses squeezed states cease to provide the Heisenberg limited precision, and their performance is close to that of coherent states with the same mean photon number.
dc.format
application/pdf
dc.language
eng
dc.publisher
dc.relation
Physical review. A ; Vol. 79, Issue 3 (March 2009), p. 033834-1-033834-12
dc.rights
open access
dc.rights
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dc.rights
https://rightsstatements.org/vocab/InC/1.0/
dc.title
Phase estimation for thermal Gaussian states
dc.type
Article


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