Coulomb blockade in a quantum dot coupled strongly to a lead.
نویسندگان
چکیده
We study theoretically a quantum dot in the quantum Hall regime that is strongly coupled to a single lead via a point contact. We find that even when the transmission through the point contact is perfect, important features of the Coulomb blockade persist. In particular, the tunneling into the dot via a second weakly coupled lead is suppressed, and shows features that can be ascribed to elastic or inelastic cotunneling through the dot. When there is weak backscattering at the point contact, both the tunneling conductance and the differential capacitance are predicted to oscillate as a function of gate voltage. We point out that the dimensionless ratio j between the fractional oscillations in G and C is an intrinsic property of the dot, which, in principle, can be measured. We compute j within two models of electron-electron interactions. In addition, we discuss the role of additional channels.
منابع مشابه
Chapter 3 . Coulomb Blockade In Single And Double Quantum Dots
A few years ago, Professor Kastner's research group discovered that the conductance through a quantum dot weakly coupled to the leads shows periodic peaks as a function of the voltage on a gate electrode. 1 This behavior was attributed to the phenomenon of Coulomb blockade: to add an electron to the dot, the system must have an energy equal to the electrostatic energy of a dot charged by one el...
متن کاملCOMPENSATION OF THE SPIN OF A QUANTUM DOT AT COULOMB BLOCKADE Kondo correlation with the contacts leads to a macro- scopic separation of the charge from the spin in the dot
We discuss a new entangled state that has been observed in the conduction across a quantum dot. At Coulomb blockade, electrons from the contacts correlate strongly to those localized in the dot, due to cotunneling processes. Because of the strong Coulomb repulsion on the dot, its electron number is unchanged w.r.to the dot in isolation, but the total spin is fully or partly compensated. In a do...
متن کاملTheoretical and experimental investigations of Coulomb blockade in coupled quantum dot systems.
Two strongly coupled quantum dots are theoretically and experimentally investigated. In conductance measurements on a GaAs based low-dimensional system additional features to the Coulomb blockade have been detected at low temperatures. These regions of finite conductivity are compared with theoretical investigations of a strongly coupled quantum dot system and good agreement between the theoret...
متن کامل0 A pr 1 99 9 Coulomb Blockade Fluctuations in Strongly Coupled Quantum Dots
Quantum fluctuations of Coulomb blockade are investigated as a function of the coupling to reservoirs in semiconductor quantum dots. We use fluctuations in the distance between peaks ∆N apart to characterize both the amplitude and correlation of peak motion. For strong coupling, peak motion is greatly enhanced at low temperature, but does not show the expected increase in peak-to-peak correlati...
متن کاملCoulomb Blockade Fluctuations in Strongly Coupled Quantum Dots
Quantum fluctuations of the Coulomb blockade are investigated as a function of the coupling to reservoirs in semiconductor quantum dots. We use fluctuations in the distance between peaks DN apart to characterize both the amplitude and correlation of peak motion. For strong coupling, the peak motion is greatly enhanced at low temperature, but does not show the expected increase in peak-topeak co...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Physical review. B, Condensed matter
دوره 53 19 شماره
صفحات -
تاریخ انتشار 1996