Universal correlations of Coulomb-blockade conductance peaks and the rotation scaling in quantum dots.
نویسندگان
چکیده
We show that the parametric correlations of the conductance peak amplitudes of a chaotic or weakly disordered quantum dot in the Coulomb blockade regime become universal upon an appropriate scaling of the parameter. We compute the universal forms of this correlator for both cases of conserved and broken time reversal symmetry. For a symmetric dot the correlator is independent of the details in each lead such as the number of channels and their correlation. We derive a new scaling, which we call the rotation scaling, that can be computed directly from the dot’s eigenfunction rotation rate or alternatively from the conductance peak heights, and therefore does not require knowledge of the spectrum of the dot. The relation of the rotation scaling to the level velocity scaling is discussed. The exact analytic form of the conductance peak correlator is derived at short distances. We also calculate the universal distributions of the average level width velocity for various values of the scaled parameter. The universality is illustrated in an Anderson model of a disordered dot. PACS numbers: 73.40.Gk, 05.45.+b, 73.20.Dx, 72.20.My Typeset using REVTEX 1
منابع مشابه
Universal parametric correlations of conductance peaks in quantum dots.
We compute the parametric correlation function of the conductance peaks in chaotic and weakly disordered quantum dots in the Coulomb blockade regime and demonstrate its universality upon an appropriate scaling of the parameter. For a symmetric dot we show that this correlation function is affected by breaking time-reversal symmetry but is independent of the details of the channels in the extern...
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عنوان ژورنال:
- Physical review. B, Condensed matter
دوره 54 4 شماره
صفحات -
تاریخ انتشار 1996