arXiv · 1411.5358
Confocal shift interferometry of coherent emission from trapped dipolar excitons
Abstract
We introduce a confocal shift-interferometer based on optical fibers. The presented spectroscopy allows measuring coherence maps of luminescent samples with a high spatial resolution even at cryogenic temperatures. We apply the spectroscopy onto electrostatically trapped, dipolar excitons in a semiconductor double quantum well. We find that the measured spatial coherence length of the excitonic emission coincides with the point spread function of the confocal setup. The results are consistent with a temporal coherence of the excitonic emission down to temperatures of 250 mK.
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Jens Repp, Georg J. Schinner, Enrico Schubert, Ashish K. Rai, Dirk Reuter, Andreas D. Wieck, Ursula Wurstbauer, Joerg P. Kotthaus, Alexander W. Holleitner. 2014-11-19. Confocal shift interferometry of coherent emission from trapped dipolar excitons. https://doi.org/10.1063/1.4904222
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