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Application of non-extensive entropy to study of decoherence of RbCl quantum dot qubit: Tsallis entropy

机译:非扩展熵在RbCl量子点量子比特退相干研究中的应用:Tsallis熵

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In this work, an electron which is strongly coupled to the LO-phonon in triangular quantum dots with Coulomb impurity is considered. The eigenenergies and eigenfunctions of the ground and the first-excited states of the electron are obtained using the Pekar variational method. We have studied decoherence of RbCl quantum dot qubit using the non-extensive entropy (Tsallis entropy) for different values of Coulomb impurity parameter, polaronic radius and electron-LO phonon coupling strength. Numerical analysis shows that the entropy has the oscillatory periodic evolution as function of the time due to the triangular form of the confinement. It is found that entropy oscillates under a standing wave envelope with increasing the Coulomb impurity parameter, electron-LO phonon coupling strength and polaronic radius. With reducing the non-extensive parameter q, the entropy increases and thereby we can miss information about the system.
机译:在这项工作中,考虑了在具有库仑杂质的三角形量子点中与LO声子牢固耦合的电子。使用Pekar变分法获得基的本征能和本征函数以及电子的第一激发态。我们已经使用非扩展熵(Tsallis熵)研究了RbCl量子点量子比特的去相干,以用于不同的库仑杂质参数,极化子半径和电子-LO声子耦合强度值。数值分析表明,由于约束的三角形形式,熵具有随时间变化的振荡周期演化。发现在驻波包络下熵随着库仑杂质参数,电子-LO声子耦合强度和极化子半径的增加而振荡。随着非扩展参数q的减小,熵增加,因此我们可能会错过有关系统的信息。

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