We describe a scheme for using an all-electrical, rapid, adiabatic population transfer between two spatially separated dots in a triple-quantum dot system. The electron spends no time in the middle dot and does not change its energy during the transfer process. Although a coherent population transfer method, this scheme may well prove useful in incoherent electronic computation (for example quantum-dot cellular automata) where it may provide a coherent advantage to an otherwise incoherent device. It can also be thought of as a limiting case of type II quantum computing, where sufficient coherence exists for a single gate operation, but not for the preservation of superpositions after the operation. We extend our analysis to the case of many...
We calculate the excess energy transferred into two-dot and three-dot quantum dot cellular automata ...
We investigate interferometry using a spatial adiabatic passage technique called Coherent Tunnelling...
We present a fully electronic analogue of coherent population trapping in quantum optics, based on d...
We propose two schemes to coherently transfer arbitrary quantum states of the two-electron singlet-t...
We propose a quantum dot implementation of a quantum state transfer channel. The proposed channel co...
A solid-state analog of stimulated Raman adiabatic passage can be implemented in a triple-well solid...
Incoherent quantum charge tunneling forms the basis of semiconductor devices. However it is well kno...
The use of buried dopants to construct quantum-dot cellular automata is investigated as an alternati...
This is a code repository for paper under the title of "Incoherent Nonadiabatic to Coherent Adiabati...
We study the detection of electrons undergoing coherent transfer via adiabatic passage (CTAP) in a t...
© 2010 Dr. Lenneke Maria JongAdiabatic passage techniques have been used for coherent population tra...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
We propose a protocol to prepare a state in the left and center quantum dots of a triple dot array a...
Quantum dots are nanoscopic systems, where carriers are confined in all three spatial directions. Su...
We propose a solid-state implementation of stimulated Raman adiabatic passage in two coupled semicon...
We calculate the excess energy transferred into two-dot and three-dot quantum dot cellular automata ...
We investigate interferometry using a spatial adiabatic passage technique called Coherent Tunnelling...
We present a fully electronic analogue of coherent population trapping in quantum optics, based on d...
We propose two schemes to coherently transfer arbitrary quantum states of the two-electron singlet-t...
We propose a quantum dot implementation of a quantum state transfer channel. The proposed channel co...
A solid-state analog of stimulated Raman adiabatic passage can be implemented in a triple-well solid...
Incoherent quantum charge tunneling forms the basis of semiconductor devices. However it is well kno...
The use of buried dopants to construct quantum-dot cellular automata is investigated as an alternati...
This is a code repository for paper under the title of "Incoherent Nonadiabatic to Coherent Adiabati...
We study the detection of electrons undergoing coherent transfer via adiabatic passage (CTAP) in a t...
© 2010 Dr. Lenneke Maria JongAdiabatic passage techniques have been used for coherent population tra...
The adiabatic passage of two correlated electrons in three coupled quantum dots is shown to provide ...
We propose a protocol to prepare a state in the left and center quantum dots of a triple dot array a...
Quantum dots are nanoscopic systems, where carriers are confined in all three spatial directions. Su...
We propose a solid-state implementation of stimulated Raman adiabatic passage in two coupled semicon...
We calculate the excess energy transferred into two-dot and three-dot quantum dot cellular automata ...
We investigate interferometry using a spatial adiabatic passage technique called Coherent Tunnelling...
We present a fully electronic analogue of coherent population trapping in quantum optics, based on d...