English
 
Help Privacy Policy Disclaimer
  Advanced SearchBrowse

Item

ITEM ACTIONSEXPORT
 
 
DownloadE-Mail
  LIGO’s quantum response to squeezed states

McCuller, L., Dwyer, S. E., Green, A. C., Yu, H., Barsotti, L., Blair, C. D., et al. (2021). LIGO’s quantum response to squeezed states. Physical Review D, 104(6): 062006. doi:10.1103/PhysRevD.104.062006.

Item is

Files

show Files
hide Files
:
2105.12052.pdf (Preprint), 990KB
Name:
2105.12052.pdf
Description:
File downloaded from arXiv at 2021-06-03 07:37
OA-Status:
Visibility:
Public
MIME-Type / Checksum:
application/pdf / [MD5]
Technical Metadata:
Copyright Date:
-
Copyright Info:
-
:
PhysRevD.104.062006.pdf (Publisher version), 2MB
 
File Permalink:
-
Name:
PhysRevD.104.062006.pdf
Description:
-
OA-Status:
Visibility:
Restricted (Max Planck Institute for Gravitational Physics (Albert Einstein Institute), MPGR; )
MIME-Type / Checksum:
application/pdf
Technical Metadata:
Copyright Date:
-
Copyright Info:
-
License:
-

Locators

show

Creators

show
hide
 Creators:
McCuller, L., Author
Dwyer, S. E., Author
Green, A. C., Author
Yu, Haocun, Author
Barsotti, L., Author
Blair, C. D., Author
Brown, D. D., Author
Effler, A., Author
Evans, M., Author
Fernandez-Galiana, A., Author
Fritschel, P., Author
Frolov, V. V., Author
Kijbunchoo, N., Author
Mansell, G. L., Author
Matichard, F., Author
Mavalvala, N., Author
McClelland, D. E., Author
McRae, T., Author
Mullavey, A., Author
Sigg, D., Author
Slagmolen, B. J. J., AuthorTse, M., AuthorVo, T., AuthorWard, R. L., AuthorWhittle, C., AuthorAbbott, R., AuthorAdams, C., AuthorAdhikari, R. X., AuthorAnanyeva, A., AuthorAppert, S., AuthorArai, K., AuthorAreeda, J. S., AuthorAsali, Y., AuthorAston, 0 S. M., AuthorAustin, C., AuthorBaer, A. M., AuthorBall, M., AuthorBallmer, S. W., AuthorBanagiri, S., AuthorBarker, D., AuthorBartlett, J., AuthorBerger, B. K., AuthorBetzwieser, J., AuthorBhattacharjee, D., AuthorBillingsley, G., AuthorBiscans, S., AuthorBlair, R. M., AuthorBode, N.1, Author           Booker, P.1, AuthorBork, R., AuthorBramley, A., AuthorBrooks, A. F., AuthorBuikema, A., AuthorCahillane, C., AuthorCannon, K. C., AuthorChen, X., AuthorCiobanu, 0 A. A., AuthorClara, F., AuthorCompton, C. M., AuthorCooper, S. J., AuthorCorley, K. R., AuthorCountryman, 0 S. T., AuthorCovas, 0 P. B., AuthorCoyne, D. C., AuthorDatrier, L. E. H., AuthorDavis, D., AuthorDi Fronzo, C., AuthorDooley, K. L., AuthorDriggers, J. C., AuthorEtzel, T., AuthorEvans, T. M., AuthorFeicht, J., AuthorFulda, P., AuthorFyffe, M., AuthorGiaime, J. A., AuthorGiardina, K. D., AuthorGodwin, P., AuthorGoetz, E., AuthorGras, S., AuthorGray, C., AuthorGray, R., AuthorGustafson, E. K., AuthorGustafson, R., AuthorHanks, J., AuthorHanson, J., AuthorHardwick, T., AuthorHasskew, R. K., AuthorHeintze, M. C., AuthorHelmling-Cornell, A. F., AuthorHolland, N. A., AuthorJones, J. D., AuthorKandhasamy, S., AuthorKarki, S., AuthorKasprzack, M., AuthorKawabe, K., AuthorKing, P. J., AuthorKissel, J. S., AuthorKumar, Rahul, AuthorLandry, M., AuthorLane, B. B., AuthorLantz, B., AuthorLaxen, M., AuthorLecoeuche, Y. K., AuthorLeviton, J., AuthorLiu, J.1, Author           Lormand, M., AuthorLundgren, A. P., AuthorMacas, 0 R., AuthorMacInnis, M., AuthorMacleod, D. M., AuthorMarka, S., AuthorMarka, 0 Z., AuthorMartynov, 0 D. V., AuthorMason, K., AuthorMassinger, T. J., AuthorMcCarthy, R., AuthorMcCormick, S., AuthorMcIver, J., AuthorMendell, G., AuthorMerfeld, K., AuthorMerilh, E. L., AuthorMeylahn, F.1, Author           Mistry, T., AuthorMittleman, R., AuthorMoreno, G., AuthorMow-Lowry, C. M., AuthorMozzon, S., AuthorNelson, 0 T. J. N., AuthorNguyen, P., AuthorNuttall, L. K., AuthorOberling, 0 J., AuthorOram, Richard J., AuthorOsthelder, C., AuthorOttaway, D. J., AuthorOvermier, H., AuthorPalamos, J. R., AuthorParker, W., AuthorPayne, E., AuthorPele, A., AuthorPenhorwood, R., AuthorPerez, C. J., AuthorPirello, M., AuthorRadkins, H., AuthorRamirez, K. E., AuthorRichardson, J. W., AuthorRiles, K., AuthorRobertson, N. A., AuthorRollins, J. G., AuthorRomel, C. L., AuthorRomie, J. H., AuthorRoss, M. P., AuthorRyan, K., AuthorSadecki, T., AuthorSanchez, E. J., AuthorSanchez, L. E., AuthorSaravanan, T. R., AuthorSavage, R. L., AuthorSchaetzl, D., AuthorSchnabel, R., AuthorSchofield, R. M. S., AuthorSchwartz, E., AuthorSellers, D., AuthorShaffer, T., AuthorSmith, J. R., AuthorSoni, S., AuthorSorazu, B., AuthorSpencer, A. P., AuthorStrain, K. A., AuthorSun, L., AuthorSzczepanczyk, M. J., AuthorThomas, M., AuthorThomas, P., AuthorThorne, K. A., AuthorToland, K., AuthorTorrie, C. I., AuthorTraylor, G., AuthorUrban, A. L., AuthorVajente, G., AuthorValdes, G., AuthorVander-Hyde, D. C., AuthorVeitch, P. J., AuthorVenkateswara, K., AuthorVenugopalan, G., AuthorViets, A. D., AuthorVorvick, C., AuthorWade, M., AuthorWarner, J., AuthorWeaver, B., AuthorWeiss, R., AuthorWillke, B.1, Author           Wipf, C. C., AuthorXiao, L., AuthorYamamoto, H., AuthorYu, Hang, AuthorZhang, L., AuthorZucker, M. E., AuthorZweizig, J., Author more..
Affiliations:
1Laser Interferometry & Gravitational Wave Astronomy, AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, ou_24010              

Content

show
hide
Free keywords: Physics, Instrumentation and Detectors, physics.ins-det, Physics, Optics, physics.optics,Quantum Physics, quant-ph
 Abstract: Gravitational Wave interferometers achieve their profound sensitivity by
combining a Michelson interferometer with optical cavities, suspended masses,
and now, squeezed quantum states of light. These states modify the measurement
process of the LIGO, VIRGO and GEO600 interferometers to reduce the quantum
noise that masks astrophysical signals; thus, improvements to squeezing are
essential to further expand our gravitational view of the universe. Further
reducing quantum noise will require both lowering decoherence from losses as
well more sophisticated manipulations to counter the quantum back-action from
radiation pressure. Both tasks require fully understanding the physical
interactions between squeezed light and the many components of km-scale
interferometers. To this end, data from both LIGO observatories in observing
run three are expressed using frequency-dependent metrics to analyze each
detector's quantum response to squeezed states. The response metrics are
derived and used to concisely describe physical mechanisms behind squeezing's
simultaneous interaction with transverse-mode selective optical cavities and
the quantum radiation pressure noise of suspended mirrors. These metrics and
related analysis are broadly applicable for cavity-enhanced optomechanics
experiments that incorporate external squeezing, and -- for the first time --
give physical descriptions of every feature so far observed in the quantum
noise of the LIGO detectors.

Details

show
hide
Language(s):
 Dates: 2021-05-252021
 Publication Status: Issued
 Pages: 24 pages, 5 figures
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: arXiv: 2105.12052
DOI: 10.1103/PhysRevD.104.062006
 Degree: -

Event

show

Legal Case

show

Project information

show

Source 1

show
hide
Title: Physical Review D
Source Genre: Journal
 Creator(s):
Affiliations:
Publ. Info: -
Pages: - Volume / Issue: 104 (6) Sequence Number: 062006 Start / End Page: - Identifier: -