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Items: 1 to 20 of 109

1.

Coupling-rate determination based on radiation-pressure-induced normal mode splitting in cavity optomechanical systems.

He W, Li JJ, Zhu KD.

Opt Lett. 2010 Feb 1;35(3):339-41. doi: 10.1364/OL.35.000339.

PMID:
20125714
2.

Determination of the vacuum optomechanical coupling rate using frequency noise calibration.

Gorodetsky ML, Schliesser A, Anetsberger G, Deleglise S, Kippenberg TJ.

Opt Express. 2010 Oct 25;18(22):23236-46. doi: 10.1364/OE.18.023236.

PMID:
21164665
3.

Optical and mechanical design of a "zipper" photonic crystal optomechanical cavity.

Chan J, Eichenfield M, Camacho R, Painter O.

Opt Express. 2009 Mar 2;17(5):3802-17.

PMID:
19259222
4.

Optomechanical dark mode.

Dong C, Fiore V, Kuzyk MC, Wang H.

Science. 2012 Dec 21;338(6114):1609-13. doi: 10.1126/science.1228370. Epub 2012 Nov 15.

5.

Nonlinear optical response of cavity optomechanical system with second-order coupling.

Wang C, Chen HJ, Zhu KD.

Appl Opt. 2015 May 20;54(15):4623-8. doi: 10.1364/AO.54.004623.

PMID:
26192494
6.

Radiation-pressure cooling and optomechanical instability of a micromirror.

Arcizet O, Cohadon PF, Briant T, Pinard M, Heidmann A.

Nature. 2006 Nov 2;444(7115):71-4.

PMID:
17080085
7.

Modeling dispersive coupling and losses of localized optical and mechanical modes in optomechanical crystals.

Eichenfield M, Chan J, Safavi-Naeini AH, Vahala KJ, Painter O.

Opt Express. 2009 Oct 26;17(22):20078-98. doi: 10.1364/OE.17.020078.

PMID:
19997232
8.

Design of dispersive optomechanical coupling and cooling in ultrahigh-Q/V slot-type photonic crystal cavities.

Li Y, Zheng J, Gao J, Shu J, Aras MS, Wong CW.

Opt Express. 2010 Nov 8;18(23):23844-56. doi: 10.1364/OE.18.023844.

PMID:
21164729
9.

Sub-pg mass sensing and measurement with an optomechanical oscillator.

Liu F, Alaie S, Leseman ZC, Hossein-Zadeh M.

Opt Express. 2013 Aug 26;21(17):19555-67. doi: 10.1364/OE.21.019555.

PMID:
24105503
10.

Optomechanically induced transparency.

Weis S, Rivière R, Deléglise S, Gavartin E, Arcizet O, Schliesser A, Kippenberg TJ.

Science. 2010 Dec 10;330(6010):1520-3. doi: 10.1126/science.1195596. Epub 2010 Nov 11.

11.

Electrostatic actuation of silicon optomechanical resonators.

Sridaran S, Bhave SA.

Opt Express. 2011 May 9;19(10):9020-6. doi: 10.1364/OE.19.009020.

PMID:
21643155
12.

Strong dispersive coupling of a high-finesse cavity to a micromechanical membrane.

Thompson JD, Zwickl BM, Jayich AM, Marquardt F, Girvin SM, Harris JG.

Nature. 2008 Mar 6;452(7183):72-5. doi: 10.1038/nature06715. Erratum in: Nature. 2008 Apr 17;452(7189):900.

PMID:
18322530
13.

Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip.

Colombe Y, Steinmetz T, Dubois G, Linke F, Hunger D, Reichel J.

Nature. 2007 Nov 8;450(7167):272-6.

PMID:
17994094
14.

Reclassifying exciton-phonon coupling in molecular aggregates: evidence of strong nonadiabatic coupling in oligothiophene crystals.

Spano FC, Silvestri L, Spearman P, Raimondo L, Tavazzi S.

J Chem Phys. 2007 Nov 14;127(18):184703.

PMID:
18020654
15.

Characterization of radiation pressure and thermal effects in a nanoscale optomechanical cavity.

Camacho RM, Chan J, Eichenfield M, Painter O.

Opt Express. 2009 Aug 31;17(18):15726-35. doi: 10.1364/OE.17.015726.

PMID:
19724572
16.

Signatures of nonlinear cavity optomechanics in the weak coupling regime.

Børkje K, Nunnenkamp A, Teufel JD, Girvin SM.

Phys Rev Lett. 2013 Aug 2;111(5):053603. Epub 2013 Aug 2.

PMID:
23952399
17.

Coupled mode theory analysis of mode-splitting in coupled cavity system.

Li Q, Wang T, Su Y, Yan M, Qiu M.

Opt Express. 2010 Apr 12;18(8):8367-82. doi: 10.1364/OE.18.008367.

PMID:
20588682
18.

Quantum many-body dynamics in optomechanical arrays.

Ludwig M, Marquardt F.

Phys Rev Lett. 2013 Aug 16;111(7):073603. Epub 2013 Aug 16.

PMID:
23992065
19.

Multi-normal mode-splitting for an optical cavity with electromagnetically induced transparency medium.

Yu X, Zhang J.

Opt Express. 2010 Mar 1;18(5):4057-65. doi: 10.1364/OE.18.004057.

PMID:
20389420
20.

Climbing the Jaynes-Cummings ladder and observing its nonlinearity in a cavity QED system.

Fink JM, Göppl M, Baur M, Bianchetti R, Leek PJ, Blais A, Wallraff A.

Nature. 2008 Jul 17;454(7202):315-8. doi: 10.1038/nature07112.

PMID:
18633413

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