Non-classical light scattered by laser-pumped molecules possessing permanent dipoles
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MÎRZAC, Alexandra, CIORNEA, Viorel, MACOVEI, Mihai. Non-classical light scattered by laser-pumped molecules possessing permanent dipoles. In: Moldavian Journal of the Physical Sciences, 2018, nr. 1-2(17), pp. 95-104. ISSN 1810-648X. DOI: https://doi.org/10.5281/zenodo.4019167
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Moldavian Journal of the Physical Sciences
Numărul 1-2(17) / 2018 / ISSN 1810-648X /ISSNe 2537-6365

Non-classical light scattered by laser-pumped molecules possessing permanent dipoles

DOI:https://doi.org/10.5281/zenodo.4019167
CZU: 533.9+538.9

Pag. 95-104

Mîrzac Alexandra, Ciornea Viorel, Macovei Mihai
 
Institute of Applied Physics
 
 
Disponibil în IBN: 31 ianuarie 2019


Rezumat

Squeezing in resonance fluorescence processes of a laser-pumped molecule possessing permanent dipoles is shown. A weak low-frequency coherent field pumps the sample near resonance with the dynamically Stark-splitting states induced by a second stronger laser field driving the main two-level transition. The fluorescence spectrum consists of three coherently scattered spectral lines and up to nine incoherently scattered spectral lines. Compared with a similar problem yet in the absence of permanent dipoles, aditional squeezing regions are found.

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