Published October 10, 2014 | Version Submitted + Supplemental Material + Published
Journal Article Open

Narrowing the Filter-Cavity Bandwidth in Gravitational-Wave Detectors via Optomechanical Interaction

Abstract

We propose using optomechanical interaction to narrow the bandwidth of filter cavities for achieving frequency-dependent squeezing in advanced gravitational-wave detectors, inspired by the idea of optomechanically induced transparency. This can allow us to achieve a cavity bandwidth on the order of 100 Hz using small-scale cavities. Additionally, in contrast to a passive Fabry-Pérot cavity, the resulting cavity bandwidth can be dynamically tuned, which is useful for adaptively optimizing the detector sensitivity when switching amongst different operational modes. The experimental challenge for its implementation is a stringent requirement for very low thermal noise of the mechanical oscillator, which would need a superb mechanical quality factor and a very low temperature. We consider one possible setup to relieve this requirement by using optical dilution to enhance the mechanical quality factor.

Additional Information

© 2014 American Physical Society. Published 10 October 2014; received 2 September 2013. We thank Huan Yang, David McCelland, Farid Khalili, Li Ju, and Jiayi Qin for fruitful discussions. Y.M., S. L. D., C. Z., R. L.W., and D. G. B. have been supported by the Western Australia Centers of Excellence program, and by the Australian Research Council; W. Z. K. is supported by NSF Grant No. PHY-0757058; H. M. and Y. C. are supported by NSF Grant No. PHY-1068881 and NSF CAREER Grant No. PHY-0956189.

Attached Files

Published - PhysRevLett.113.151102.pdf

Submitted - 1402.4897v2.pdf

Supplemental Material - app0.pdf

Supplemental Material - app2.pdf

Supplemental Material - appendix2.pdf

Supplemental Material - appendix2.tex

Supplemental Material - supplementary_pdf.pdf

Files

1402.4897v2.pdf

Files (2.6 MB)

Name Size
md5:9955440df3765f0953593ab1db62b1d0
2.1 MB Preview Download
md5:e9eeab7c78ff94606218854d5a3c431c
16.4 kB Preview Download
md5:ed158c4e8788d98dd99abe68f92e4063
13.8 kB Preview Download
md5:ec5370470eeb398cd1fb64375dd385a3
270.0 kB Preview Download
md5:34c149da01a49c7b4abcf00a9868f337
15.3 kB Download
md5:ae8a1a19c154c1d9dba9128cb136fa10
204.2 kB Preview Download
md5:b27a6ed816d24c14e2322998f31a4e68
15.5 kB Preview Download

Additional details

Additional titles

Alternative title
Narrowing the filter cavity bandwidth via optomechanical interaction

Identifiers

Eprint ID
52389
Resolver ID
CaltechAUTHORS:20141204-112753914

Related works

Funding

Western Australia Centers of Excellence program
Australian Research Council
NSF
PHY-0757058
NSF
PHY-1068881
NSF
PHY-0956189

Dates

Created
2014-12-04
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
LIGO