Chin. J. Semicond. > 2006, Volume 27 > Issue 12 > 2123-2126

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Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot

Yin Jiwen, Yu Yifu and Xiao Jinglin

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Abstract: The temperature dependences on the properties of strong-coupling bound magnetopolarn in a quantum dot are studied using the linear combination operator and the unitary transformation methods.The relations of the vibrational frequency,the ground state energy,and the mean number of phonons of the strong-coupling bound magnetopolaron in a quantum dot with the temperature are derived.Numerical calculations,for the RbCl crystal as an example,are performed,and the results indicate that the vibrational frequency,the ground state energy and the mean number of phonons of the strong-coupling bound magnetopolaron in a quantum dot increase with the increase of the temperature.The ground state energy increases with the increase of the confinement strength of the quantum dot

Key words: quantum dotstrong-couplingbound magnetopolarontemperature dependence

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    Received: 18 August 2015 Revised: 14 August 2006 Online: Published: 01 December 2006

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      Yin Jiwen, Yu Yifu, Xiao Jinglin. Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot[J]. Journal of Semiconductors, 2006, In Press. Yin J W, Yu Y F, Xiao J L. Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot[J]. Chin. J. Semicond., 2006, 27(12): 2123.Export: BibTex EndNote
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      Yin Jiwen, Yu Yifu, Xiao Jinglin. Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot[J]. Journal of Semiconductors, 2006, In Press.

      Yin J W, Yu Y F, Xiao J L. Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot[J]. Chin. J. Semicond., 2006, 27(12): 2123.
      Export: BibTex EndNote

      Temperature Dependence of Strong-Coupling Bound Magnetopolaron in a Quantum Dot

      • Received Date: 2015-08-18
      • Accepted Date: 2006-06-06
      • Revised Date: 2006-08-14
      • Published Date: 2006-12-04

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