Controlling the Interaction of Photons and Single Molecules in a λ/2-Microresonator

被引:0
作者
Gutbrod, Raphael [1 ]
Baer, Sebastian [1 ]
Chizhik, Alexey [1 ]
Schleifenbaum, Frank [1 ]
Chizhik, Anna [1 ]
Meixner, Alfred J. [1 ]
机构
[1] Eberhard Karls Univ Tubingen, Inst Phys & Theoret Chem, D-72076 Tubingen, Germany
来源
2010 12TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS (ICTON) | 2011年
关键词
microcavity; single molecule spectroscopy; confocal microscopy; higher order laser modes; FRET; MICROCAVITY;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Optical microresonators are structures which confine light to a small region in the range of one wavelength. A practical design for a single-mode microresonator is formed by two silver mirrors enclosing a transparent dielectric medium with single quantum emitters. The radiation of a quantum emitter is coupled to cavity resonances which leads to an optical confinement of the broadband fluorescence. Using a tunable microresonator, we were able to actively change the optical properties of an embedded single molecule. The radiative coupling of the emitter to the electromagnetic field is also determined by the orientation of its transition dipole moment with respect to the cavity normal. We describe here a method to determine the 3D-orientation and position of quantum emitters embedded in the microresonator. In addition, this method can be used to detect the longitudinal position of a fluorescent bead in the microresonator with an accuracy of a few nanometers. We will also present first experiments on Frster Resonance Energy Transfer (FRET) control on the DsRed protein system in a microresonator.
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页数:4
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