Enhanced cooling for stronger qubit-phonon couplings
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CEBAN, Victor, MACOVEI, Mihai. Enhanced cooling for stronger qubit-phonon couplings. In: Romanian Reports in Physics, 2018, vol. 70, pp. 1-10. ISSN 1221-1451.
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Romanian Reports in Physics
Volumul 70 / 2018 / ISSN 1221-1451

Enhanced cooling for stronger qubit-phonon couplings


Pag. 1-10

Ceban Victor, Macovei Mihai
 
Institute of Applied Physics, Academy of Sciences of Moldova
 
 
Disponibil în IBN: 10 mai 2018


Rezumat

Here we present details on how the cooling effects of an opto-me-chanical system are affected beyond the secular approximation. To this end, a laser driven two-level quantum dot (QD) embedded in a phononic nano-cavity is investigated for moderately strong QD-phonon couplings regimes. For these regimes, the use of a secular approximation within the QD-phonon interaction terms is no longer justified as the rapidly oscillating terms cannot be neglected from the system dynamics. Therefore, one shows that although being small, their contribution plays an important role when quantum cooling is achieved. The main contribution of the fast oscillating terms is analytically estimated and one compares how the quantum cooling dynamics changes within or beyond the secular approximation. The behavior of the quantum cooling effect is investigated in the steady-state regime via the phonon field statistics.

Cuvinte-cheie
Optical cooling, phonon, qubit

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<dc:creator>Ceban, V.M.</dc:creator>
<dc:creator>Macovei, M.A.</dc:creator>
<dc:date>2018-04-11</dc:date>
<dc:description xml:lang='en'><p>Here we present details on how the cooling effects of an opto-me-chanical system are affected beyond the secular approximation. To this end, a laser driven two-level quantum dot (QD) embedded in a phononic nano-cavity is investigated for moderately strong QD-phonon couplings regimes. For these regimes, the use of a secular approximation within the QD-phonon interaction terms is no longer justified as the rapidly oscillating terms cannot be neglected from the system dynamics. Therefore, one shows that although being small, their contribution plays an important role when quantum cooling is achieved. The main contribution of the fast oscillating terms is analytically estimated and one compares how the quantum cooling dynamics changes within or beyond the secular approximation. The behavior of the quantum cooling effect is investigated in the steady-state regime via the phonon field statistics.</p></dc:description>
<dc:source>Romanian Reports in Physics  () 1-10</dc:source>
<dc:subject>Optical cooling</dc:subject>
<dc:subject>phonon</dc:subject>
<dc:subject>qubit</dc:subject>
<dc:title>Enhanced cooling for stronger qubit-phonon couplings</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
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