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Electromagnetically Induced Transparency in a mono-isotopic $^{167}$Er:$^7$LiYF$_4$ crystal below 1 Kelvin

Quantum Physics 2020-10-28 v1 Applied Physics Optics

Abstract

Electromagnetically induced transparency allows for controllable change of absorption properties which can be exploited in a number of applications including optical quantum memory. In this paper, we present a study of the electromagnetically induced transparency in 167^{167}Er:6^6LiYF4_4 crystal at low magnetic fields and ultra-low temperatures. Experimental measurement scheme employs optical vector network analysis which provides high precision measurement of amplitude, phase and pulse delay. We found that sub-Kelvin temperatures are the necessary requirement for studying electromagnetically induced transparency in this crystal at low fields. A good agreement between theory and experiment is achieved taking into account the phonon bottleneck effect.

Keywords

Cite

@article{arxiv.2005.01024,
  title  = {Electromagnetically Induced Transparency in a mono-isotopic $^{167}$Er:$^7$LiYF$_4$ crystal below 1 Kelvin},
  author = {Nadezhda Kukharchyk and Dmitriy Sholokhov and Oleg Morozov and Stella L. Korableva and Alexey A. Kalachev and Pavel A. Bushev},
  journal= {arXiv preprint arXiv:2005.01024},
  year   = {2020}
}

Comments

8 pages, 5 figures