We review a new adiabatic scheme - coherent spin transport by adiabatic passage (CSTAP) - for physical qubit transport particularly suited to atomic and solid-state systems. Several applications immediately follow, including a 2D Si:P donor electron spin architecture for quantum computing, and protocols for generating entangled states across non-local qubits
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...
Given the effectiveness of semiconductor devices for classical computation one is naturally led to c...
© 2010 Dr. Lenneke Maria JongAdiabatic passage techniques have been used for coherent population tra...
Solid state quantum computer architectures are often touted as inherently scalable on the basis of p...
Qubit transport has been identified as vital in improving quantum error correction thresholds in sca...
Coherent tunneling adiabatic passage (CTAP) has been proposed as a long-range physical quantum bits ...
A fault-tolerant quantum processor may be configured using stationary qubits interacting only with t...
A computer with quantum mechanical building blocks, or qubits, promises a new class of computational...
© 2008 Matthew J. Testolin.This thesis identifies problems with the current operation proposals for ...
The ability to transport quantum information across some distance can facilitate the design and oper...
The use of adiabatic passage techniques to mediate particle transport through real space, rather tha...
A solid-state analog of stimulated Raman adiabatic passage can be implemented in a triple-well solid...
Quantum computers have gained great attention in the recent past, with their promise for solving exc...
Donor-based spin qubits in silicon are promising candidates for solid-state quantum computation as t...
Coherent tunneling adiabatic passage CTAP has been proposed as a long-range physical quantum bits qu...
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...
Given the effectiveness of semiconductor devices for classical computation one is naturally led to c...
© 2010 Dr. Lenneke Maria JongAdiabatic passage techniques have been used for coherent population tra...
Solid state quantum computer architectures are often touted as inherently scalable on the basis of p...
Qubit transport has been identified as vital in improving quantum error correction thresholds in sca...
Coherent tunneling adiabatic passage (CTAP) has been proposed as a long-range physical quantum bits ...
A fault-tolerant quantum processor may be configured using stationary qubits interacting only with t...
A computer with quantum mechanical building blocks, or qubits, promises a new class of computational...
© 2008 Matthew J. Testolin.This thesis identifies problems with the current operation proposals for ...
The ability to transport quantum information across some distance can facilitate the design and oper...
The use of adiabatic passage techniques to mediate particle transport through real space, rather tha...
A solid-state analog of stimulated Raman adiabatic passage can be implemented in a triple-well solid...
Quantum computers have gained great attention in the recent past, with their promise for solving exc...
Donor-based spin qubits in silicon are promising candidates for solid-state quantum computation as t...
Coherent tunneling adiabatic passage CTAP has been proposed as a long-range physical quantum bits qu...
This work proposes and analyzes the adiabatic motion of fault tolerant qubits in twosystems as candi...
Given the effectiveness of semiconductor devices for classical computation one is naturally led to c...
© 2010 Dr. Lenneke Maria JongAdiabatic passage techniques have been used for coherent population tra...