Coulomb blockade conductance peak fluctuations in quantum dots and the independent particle model
arXiv:cond-mat/9905023 · doi:10.1103/PhysRevB.60.13682
Abstract
We study the combined effect of finite temperature, underlying classical dynamics, and deformations on the statistical properties of Coulomb blockade conductance peaks in quantum dots. These effects are considered in the context of the single-particle plus constant-interaction theory of the Coulomb blockade. We present numerical studies of two chaotic models, representative of different mean-field potentials: a parametric random Hamiltonian and the smooth stadium. In addition, we study conductance fluctuations for different integrable confining potentials. For temperatures smaller than the mean level spacing, our results indicate that the peak height distribution is nearly always in good agreement with the available experimental data, irrespective of the confining potential (integrable or chaotic). We find that the peak bunching effect seen in the experiments is reproduced in the theoretical models under certain special conditions. Although the independent particle model fails, in general, to explain quantitatively the short-range part of the peak height correlations observed experimentally, we argue that it allows for an understanding of the long-range part.
RevTex 3.1, 34 pages (including 13 EPS and PS figures), submitted to Phys. Rev. B
Cited by in corpus (11)
- Measuring the Lyapunov exponent using quantum mechanics
- Coherent versus sequential electron tunneling in quantum dots
- Interactions in Chaotic Nanoparticles: Fluctuations in Coulomb Blockade Peak Spacings
- Semiclassical Density Functional Theory: Strutinsky Energy Corrections in Quantum Dots
- Spin and e-e interactions in quantum dots: Leading order corrections to universality and temperature effects
- Coulomb Blockade Peak Spacing Distribution: The Interplay of Temperature and Spin
- Semiclassical Theory of Coulomb Blockade Peak Heights in Chaotic Quantum Dots
- Semiclassical spatial correlations in chaotic wave functions
- The Loschmidt echo in classically chaotic systems: Quantum chaos, irreversibility and decoherence
- Transmission phase of a quantum dot and statistical fluctuations of partial-width amplitudes
- Correlation between peak-height modulation and phase-lapses in transport through quantum dots