We propose an implementation scheme for holonomic, i.e., geometrical, quantum information processing based on semiconductor nanostructures. Our quantum hardware consists of coupled semiconductor macroatoms addressed/controlled by ultrafast multicolor laser-pulse sequences. More specifically, logical qubits are encoded in excitonic states with different spin polarizations and manipulated by adiabatic time-control of the laser amplitudes . The two-qubit gate is realized in a geometric fashion by exploiting dipole-dipole coupling between excitons in neighboring quantum dots
We show how it is possible to realize quantum computations on a system in which most of the paramete...
We address the question of the insensitivity of the predictions of inflationary models with respect ...
If the spatial curvature of the universe is positive, then the curvature term will always dominate a...
We consider gluon-fusion and weak-boson fusion production of Higgs plus two jets in pp collisions at...
The dynamical behavior of traversable wormholes and black holes under impulsive radiation is studied...
From two different modifications of the Gell-Mann-Okubo mass relation for (1/2)^+ baryons: the first...
A suitable generalized measurement described by a four-element positive operator valued measure (POV...
The first part of this lecture quickly touches upon some important but infrequently discussed issues...
We consider general relativistic Cauchy data representing two nonspinning, equal-mass black holes bo...
The idea of perturbation independent decay (PID) has appeared in the context of survival-probability...
We present a general formulation to suppress pure dephasing by multipulse control. The formula is fr...
We study the quantum mechanical consistency of noncommutative gauge theories by perturbatively analy...
Strong, fast pulses, called ``bang-bang'' controls can be used to eliminate the effects of system-en...
We consider the question raised by Unruh and Wald of whether mirrored boxes can self-accelerate in f...
Using the concept of crossing state and the formalism of second quantization, we propose a prescript...
We show how it is possible to realize quantum computations on a system in which most of the paramete...
We address the question of the insensitivity of the predictions of inflationary models with respect ...
If the spatial curvature of the universe is positive, then the curvature term will always dominate a...
We consider gluon-fusion and weak-boson fusion production of Higgs plus two jets in pp collisions at...
The dynamical behavior of traversable wormholes and black holes under impulsive radiation is studied...
From two different modifications of the Gell-Mann-Okubo mass relation for (1/2)^+ baryons: the first...
A suitable generalized measurement described by a four-element positive operator valued measure (POV...
The first part of this lecture quickly touches upon some important but infrequently discussed issues...
We consider general relativistic Cauchy data representing two nonspinning, equal-mass black holes bo...
The idea of perturbation independent decay (PID) has appeared in the context of survival-probability...
We present a general formulation to suppress pure dephasing by multipulse control. The formula is fr...
We study the quantum mechanical consistency of noncommutative gauge theories by perturbatively analy...
Strong, fast pulses, called ``bang-bang'' controls can be used to eliminate the effects of system-en...
We consider the question raised by Unruh and Wald of whether mirrored boxes can self-accelerate in f...
Using the concept of crossing state and the formalism of second quantization, we propose a prescript...
We show how it is possible to realize quantum computations on a system in which most of the paramete...
We address the question of the insensitivity of the predictions of inflationary models with respect ...
If the spatial curvature of the universe is positive, then the curvature term will always dominate a...