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Control of quantum phenomena: past, present and future
Quantum control is concerned with active manipulation of physical and chemical processes
on the atomic and molecular scale. This work presents a perspective of progress in the field …
on the atomic and molecular scale. This work presents a perspective of progress in the field …
Real-space grids and the Octopus code as tools for the development of new simulation approaches for electronic systems
Real-space grids are a powerful alternative for the simulation of electronic systems. One of
the main advantages of the approach is the flexibility and simplicity of working directly in real …
the main advantages of the approach is the flexibility and simplicity of working directly in real …
Quantum lissajous scars
A quantum scar—an enhancement of a quantum probability density in the vicinity of a
classical periodic orbit—is a fundamental phenomenon connecting quantum and classical …
classical periodic orbit—is a fundamental phenomenon connecting quantum and classical …
Magnetic fields effects on the electronic conduction properties of molecular ring structures
While mesoscopic conducting loops are sensitive to external magnetic fields, as is
pronouncedly exemplified by observations of the Aharonov-Bohm (AB) effect in such …
pronouncedly exemplified by observations of the Aharonov-Bohm (AB) effect in such …
Electron Localization Function for Noncollinear Spins
Understanding of bonding is key to modeling materials and predicting properties thereof. A
widely adopted indicator of bonds and atomic shells is the electron localization function …
widely adopted indicator of bonds and atomic shells is the electron localization function …
Controllable quantum scars in semiconductor quantum dots
Quantum scars are enhancements of quantum probability density along classical periodic
orbits. We study the recently discovered phenomenon of strong perturbation-induced …
orbits. We study the recently discovered phenomenon of strong perturbation-induced …
Relaxation and dephasing in open quantum systems time-dependent density functional theory: Properties of exact functionals from an exactly-solvable model system
DG Tempel, A Aspuru-Guzik - Chemical Physics, 2011 - Elsevier
The dissipative dynamics of many-electron systems interacting with a thermal environment
has remained a long-standing challenge within time-dependent density functional theory …
has remained a long-standing challenge within time-dependent density functional theory …
Control of quantum phenomena
Control of quantum phenomena Page 20 CONTROL OF QUANTUM PHENOMENA
CONSTANTIN BRIF, 1 RAJ CHAKRABARTI, 2 and HERSCHEL RABITZ1 1Department of …
CONSTANTIN BRIF, 1 RAJ CHAKRABARTI, 2 and HERSCHEL RABITZ1 1Department of …
Optimal control of laser-induced spin–orbit mediated ultrafast demagnetization
Laser induced ultrafast demagnetization is the process whereby the magnetic moment of a
ferromagnetic material is seen to drop significantly on a timescale of 10–100 s of …
ferromagnetic material is seen to drop significantly on a timescale of 10–100 s of …
Electron-electron interactions in artificial graphene
Recent advances in the creation and modulation of graphenelike systems are introducing a
science of “designer Dirac materials”. In its original definition, artificial graphene is a man …
science of “designer Dirac materials”. In its original definition, artificial graphene is a man …