Search results for "Quantum system"

showing 10 items of 266 documents

Dynamics of a Driven Dissipative Quantum System

2013

We investigate the dynamics of a driven multilevel system, consisting of a particle in an asymmetric bistable potential, strongly interacting with a thermal bath according to the Caldeira-Leggett model. The populations in the discrete (position) variable representation (DVR), are obtained as solution of a Markovian approximated master equation, which is derived from a discretized path integral approach based on the Feynman-Vernon influence functional. By varying the environmental parameters (temperature and coupling strength) as well as the driving frequency and amplitude, we study the transient dynamics and stationary configuration of the system. In particular, we analyze the population of…

Quantum systems with finite Hilbert spaceFluctuation phenomena random processes noise and Brownian motionquantum statistical methodDecoherenceopen systemSettore FIS/03 - Fisica Della Materia
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Transient Dynamics of a Driven Quantum Bistable System

2013

We study the transient dynamics and the asymptotic behaviour of a multilevel system in the strong dissipation regime. The system is modeled as a periodically driven quantum particle in an asymmetric double well potential, interacting with the bosonic heat bath of the Caldeira-Leggett model. The analytical approach used is non- perturbative in the particle-bath coupling and is based on a space-discretized path integral expression for the particle’s reduced density matrix. By a suitable approximation on the Feynman-Vernon influence functional a Markov-approximated master equation is obtained for the populations in the Discrete Variable Representation (DVR).

Quantum systems with finite Hilbert spaceFluctuation phenomena random processes noise and Brownian motionquantum statistical methodDecoherenceopen systemSettore FIS/03 - Fisica Della Materia
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Holonomic Quantum Computation

2008

In this brief review we describe the idea of holonomic quantum computation. The idea of geometric phase and holonomy is introduced in a general way and we provide few examples that should help the reader understand the issues involved.

Quantum technologyAlgebraPhysicsQuantum PhysicsOpen quantum systemClassical mechanicsHolonomicQuantum error correctionQuantum processQuantum operationQuantum algorithmHolonomy Quantum computationQuantum computer
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Quantum Control in Atomic Systems

1999

We review a series of recent experiments demonstrating quantum control of atomic processes and products induced by the interaction of the atom with coherent bichromatic electromagnetic fields. Since the effects under consideration are electromagnetically induced, control is established through the field parameters i.e. frequency, amplitude and phase. The controlled processes include resonant and non resonant multiphoton ionization, autoionization, radiative decay in multiple continua (ionization branching ratios) and third harmonic generation.

Quantum technologyElectromagnetic fieldPhysicsOpen quantum systemAutoionizationIonizationQuantum sensorPhysics::Atomic and Molecular ClustersQuantum simulatorHigh harmonic generationPhysics::Atomic PhysicsAtomic physics
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Applications of Quantum Mechanics

2013

Quantum mechanics provides the basis for most fields of modern physics and there are many well advanced methods of practical solution of specific and topical problems

Quantum technologyPhysicsOpen quantum systemHydrogen-like atommedicine.medical_specialtyBasis (linear algebra)Quantum dynamicsQuantum mechanicsQuantum nanosciencemedicineQuantum simulatorModern physics
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Optical control of entangled states in semiconductor quantum wells

2012

We present theory and calculations for coherent high-fidelity quantum control of many-particle states in semiconductor quantum wells. We show that coupling a two-electron double quantum dot to a terahertz optical source enables targeted excitations that are one to two orders of magnitude faster and significantly more accurate than those obtained with electric gates. The optical fields subject to physical constraints are obtained through quantum optimal control theory that we apply in conjunction with the numerically exact solution of the time-dependent Schrödinger equation. Our ability to coherently control arbitrary two-electron states, and to maximize the entanglement, opens up further pe…

Quantum technologyPhysicsOpen quantum systemQuantum discordQuantum networkQuantum error correctionQuantum mechanicsQuantum simulatorQuantum channelQuantum informationCondensed Matter Physics114 Physical sciencesElectronic Optical and Magnetic MaterialsPhysical Review B
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Multidimensional quantum walks: Diabolical points, optical wave-like propagation, and multipartite entanglement

2013

Quantum walks (QWs) are important for quantum information science, but are becoming also interesting for other fields of research as this simple quantum diffusion model finds analogues in diverse physical systems, optical ones in particular. The experimental capabilities regarding QWs have remarkably increased along recent years and several aspects of QWs are now open to experimental research, multidimensional QWs in particular [1].

Quantum technologyPhysicsOpen quantum systemQuantum networkQuantum discordCondensed Matter::OtherQuantum mechanicsQuantum algorithmQuantum walkQuantum informationCondensed Matter::Mesoscopic Systems and Quantum Hall EffectQuantum information science
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Steering distillation processes through quantum Zeno dynamics

2005

A quantum system in interaction with a repeatedly measured one undergoes a nonunitary time evolution and is pushed into a subspace substantially determined by the two-system coupling. The possibility of suitably modifying such an evolution through quantum Zeno dynamics (i.e., the generalized quantum Zeno effect) addressing the system toward an a priori decided target subspace is illustrated. Applications and their possible realizations in the context of trapped ions are also discussed.

Quantum technologyPhysicsQuantum probabilityOpen quantum systemQuantum discordClassical mechanicsQuantum processQuantum dynamicsQuantum operationQuantum PhysicsAtomic and Molecular Physics and OpticsQuantum Zeno effectPhysical Review A
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Representations and derivations of quasi ∗-algebras induced by local modifications of states

2009

Abstract The relationship between the GNS representations associated to states on a quasi ∗-algebra, which are local modifications of each other (in a sense which we will discuss) is examined. The role of local modifications on the spatiality of the corresponding induced derivations describing the dynamics of a given quantum system with infinite degrees of freedom is discussed.

Quasi *-algebrasPure mathematicsApplied MathematicsQuantum dynamicsDegrees of freedomAlgebras of unbounded operatorsDerivationsRepresentationSettore MAT/05 - Analisi MatematicaQuantum systemDerivationQuantum dynamicsRepresentation (mathematics)Settore MAT/07 - Fisica MatematicaAnalysisMathematicsJournal of Mathematical Analysis and Applications
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Quantum light depolarization: the phase-space perspective

2008

Quantum light depolarization is handled through a master equation obtained by coupling dispersively the field to a randomly distributed atomic reservoir. This master equation is solved by transforming it into a quasiprobability distribution in phase space and the quasiclassical limit is investigated.

Quasiprobability distributionPhysicsHusimi Q representationQuantum PhysicsLindblad equationWigner quasiprobability distributionQuantum limitFOS: Physical sciencesQUANTUM LIGHT DEPOLARIZATION OPEN QUANTUM SYSTEMAtomic and Molecular Physics and OpticsOpen quantum systemQuantum mechanicsQuantum electrodynamicsPhase spaceMaster equationQuantum Physics (quant-ph)
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