Fidelity of optimally controlled quantum gates with randomly coupled multiparticle environments
This work studies the feasibility of optimal control of high-fidelity quantum gates in a model of interacting two-level particles. One particle (the qubit) serves as the quantum information processor, whose evolution is controlled by a time-dependent external field. The other particles are not direc...
Κύριοι συγγραφείς: | Grace, MD, Brif, C, Rabitz, H, Lidar, D, Walmsley, I, Kosut, R |
---|---|
Μορφή: | Conference item |
Έκδοση: |
2007
|
Παρόμοια τεκμήρια
Παρόμοια τεκμήρια
-
Optimal control of quantum gates and suppression of decoherence in a system of interacting two-level particles
ανά: Grace, M, κ.ά.
Έκδοση: (2007) -
Encoding a qubit into multilevel subspaces
ανά: Grace, M, κ.ά.
Έκδοση: (2004) -
Optimal experiment design for quantum state tomography of a molecular vibrational mode
ανά: Branderhorst, M, κ.ά.
Έκδοση: (2008) -
Multiparticle quantum plasmonics
ανά: You Chenglong, κ.ά.
Έκδοση: (2020-04-01) -
Coherent control of decoherence.
ανά: Branderhorst, M, κ.ά.
Έκδοση: (2008)