Polariton condensation, superradiance and difference combination parametric resonance in mode-locked laser

S. N. Bagayev, R. M. Arkhipov, M. V. Arkhipov, V. S. Egorov, I. A. Chekhonin, M. A. Chekhonin

Результат исследований: Научные публикации в периодических изданияхстатья в журнале по материалам конференции

1 цитирование (Scopus)

Выдержка

The generation of the ring mode-locked laser containing resonant absorption medium in the cavity was investigated. It is shown that near the strong resonant absorption lines a condensation of polaritons arises. Intensive radiation looks like as superradiance in a medium without population inversion. We studied theoretically the microscopic mechanism of these phenomena. It was shown that in this system in absorbing medium a strong self-induced difference combination parametric resonance exists. Superradiance on polaritonic modes in the absorbing medium are due to the emergence of light-induced resonant polarization as a result of fast periodic nonadiabatic quantum jumps in the absorber.

Язык оригиналаанглийский
Номер статьи062028
ЖурналJournal of Physics: Conference Series
Том917
Номер выпуска6
DOI
СостояниеОпубликовано - 23 ноя 2017
Опубликовано для внешнего пользованияДа

Отпечаток

polaritons
condensation
lasers
population inversion
absorbers
cavities
rings
polarization
radiation

Предметные области Scopus

  • Физика и астрономия (все)

Цитировать

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abstract = "The generation of the ring mode-locked laser containing resonant absorption medium in the cavity was investigated. It is shown that near the strong resonant absorption lines a condensation of polaritons arises. Intensive radiation looks like as superradiance in a medium without population inversion. We studied theoretically the microscopic mechanism of these phenomena. It was shown that in this system in absorbing medium a strong self-induced difference combination parametric resonance exists. Superradiance on polaritonic modes in the absorbing medium are due to the emergence of light-induced resonant polarization as a result of fast periodic nonadiabatic quantum jumps in the absorber.",
author = "Bagayev, {S. N.} and Arkhipov, {R. M.} and Arkhipov, {M. V.} and Egorov, {V. S.} and Chekhonin, {I. A.} and Chekhonin, {M. A.}",
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Polariton condensation, superradiance and difference combination parametric resonance in mode-locked laser. / Bagayev, S. N.; Arkhipov, R. M.; Arkhipov, M. V.; Egorov, V. S.; Chekhonin, I. A.; Chekhonin, M. A.

В: Journal of Physics: Conference Series, Том 917, № 6, 062028, 23.11.2017.

Результат исследований: Научные публикации в периодических изданияхстатья в журнале по материалам конференции

TY - JOUR

T1 - Polariton condensation, superradiance and difference combination parametric resonance in mode-locked laser

AU - Bagayev, S. N.

AU - Arkhipov, R. M.

AU - Arkhipov, M. V.

AU - Egorov, V. S.

AU - Chekhonin, I. A.

AU - Chekhonin, M. A.

PY - 2017/11/23

Y1 - 2017/11/23

N2 - The generation of the ring mode-locked laser containing resonant absorption medium in the cavity was investigated. It is shown that near the strong resonant absorption lines a condensation of polaritons arises. Intensive radiation looks like as superradiance in a medium without population inversion. We studied theoretically the microscopic mechanism of these phenomena. It was shown that in this system in absorbing medium a strong self-induced difference combination parametric resonance exists. Superradiance on polaritonic modes in the absorbing medium are due to the emergence of light-induced resonant polarization as a result of fast periodic nonadiabatic quantum jumps in the absorber.

AB - The generation of the ring mode-locked laser containing resonant absorption medium in the cavity was investigated. It is shown that near the strong resonant absorption lines a condensation of polaritons arises. Intensive radiation looks like as superradiance in a medium without population inversion. We studied theoretically the microscopic mechanism of these phenomena. It was shown that in this system in absorbing medium a strong self-induced difference combination parametric resonance exists. Superradiance on polaritonic modes in the absorbing medium are due to the emergence of light-induced resonant polarization as a result of fast periodic nonadiabatic quantum jumps in the absorber.

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