Search results for "Quantum physic"

showing 10 items of 1596 documents

Irreversible work versus fidelity susceptibility for infinitesimal quenches

2016

We compare the irreversible work produced in an infinitesimal sudden quench of a quantum system at zero temperature with its ground state fidelity susceptibility, giving an explicit relation between the two quantities. We find that the former is proportional to the latter but for an extra term appearing in the irreversible work which includes also contributions from the excited states. We calculate explicitly the two quantities in the case of the quantum Ising chain, showing that at criticality they exhibit different scaling behaviors. The irreversible work, rescaled by square of the quench’s amplitude, exhibits a divergence slower than that of the fidelity susceptibility. As a consequence…

PhysicsQuantum phase transition---Quantum PhysicsWork (thermodynamics)Statistical Mechanics (cond-mat.stat-mech)FOS: Physical sciencesStatistical and Nonlinear PhysicsCondensed Matter Physics01 natural sciences010305 fluids & plasmasExcited state0103 physical sciencesQuantum systemStatistical physicsQuantum informationQuantum Physics (quant-ph)010306 general physicsGround stateScalingQuantumCondensed Matter - Statistical MechanicsInternational Journal of Modern Physics B
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Geometric phases and criticality in spin systems

2006

A general formalism of the relation between geometric phases produced by circularly evolving interacting spin systems and their criticality behavior is presented. This opens up the way for the use of geometric phases as a tool to study regions of criticality without having to undergo a quantum phase transition. As a concrete example a spin-1/2 chain with XY interactions is presented and the corresponding geometric phases are analyzed. The generalization of these results to the case of an arbitrary spin system provides an explanation for the existence of such a relation.

PhysicsQuantum phase transitionQuantum PhysicsXY modelBerry phaseGeneral MathematicsGeneral EngineeringSpin systemGeneral Physics and AstronomyFOS: Physical sciencescritical phenomenaFormalism (philosophy of mathematics)Theoretical physicsCriticalityQuantum Physics (quant-ph)
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Perturbative many-body transfer

2020

The transfer of excitations between different locations of a quantum many-body system is of primary importance in many research areas, from transport properties in spintronics and atomtronics to quantum state transfer in quantum information processing. We address the transfer of n > 1 bosonic and fermionic excitations between the edges of a one-dimensional chain modelled by a quadratic hopping Hamiltonian, where the block edges, embodying the sender and the receiver sites, are weakly coupled to the quantum wire. We find that perturbative high-quality transfer is attainable in the weak-coupling limit, for both bosons and fermions, only for certain modular arithmetic equivalence classes of th…

PhysicsQuantum physicsGeneral Physics and AstronomyQuantum computing01 natural sciencesMany bodyquantum many-body systems quantum excitation transfer quantum spin chain quadratic Hamiltonian010305 fluids & plasmasMany-body problemTheoretical physicsTransfer (group theory)Quantum systems0103 physical sciences010306 general physics
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Hybrid discrete- and continuous-variable quantum information

2015

Research in quantum information processing has followed two different directions: the use of discrete variables (qubits) and that of high-dimensional, continuous-variable Gaussian states (coherent and squeezed states). Recently, these two approaches have been converging in potentially more powerful hybrid protocols. The traditional approaches to quantum information processing using either discrete or continuous variables can be combined in hybrid protocols for tasks including quantum teleportation, computation, entanglement distillation or Bell tests.

PhysicsQuantum technologyOpen quantum systemQuantum networkQuantum error correctionQuantum mechanicsGeneral Physics and AstronomyQuantum algorithmQuantum PhysicsQuantum channelQuantum informationAlgorithmQuantum teleportationNature Physics
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Heavy Hadrons – Exotic and Conventional Quarkonium Physics at Belle II

2020

Abstract The Belle II experiment, now operating at the KEK laboratory in Japan, is a substantial upgrade of both the Belle detector and the KEKB e + e − accelerator. It aims to collect 50 times more data than existing B-Factory samples. Belle II is uniquely capable to study Charmonium and Bottomonium states and search for heavy exotic hadrons consisting of more than three quarks.

PhysicsQuarkNuclear and High Energy PhysicsParticle physics010308 nuclear & particles physicsHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyHadronQuantum PhysicsExotic hadronQuarkonium01 natural sciencesUpgradeKEKB0103 physical sciencesPhysics::Accelerator PhysicsHigh Energy Physics::Experiment010306 general physicsNuclear and Particle Physics Proceedings
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Fast thermometry for trapped ions using dark resonances

2015

We experimentally demonstrate a method to determine the temperature of trapped ions which is suitable for monitoring fast thermalization processes. We show that observing and analyzing the lineshape of dark resonances in the fluorescence spectrum provides a temperature measurement which accurate over a large dynamic range, applied to single ions and small ion crystals. Laser induced fluorescence is detected over a time of only $20\,\mu$s allowing for rapid determination of the ion temperature. In the measurement range of $10^{-1}-10^{+2}\,$mK we reach better than $15\,\%$ accuracy. Tuning the cooling laser to selected resonance features allows for controlling the ion temperatures between $0…

PhysicsRange (particle radiation)Quantum PhysicsStatistical Mechanics (cond-mat.stat-mech)Atomic Physics (physics.atom-ph)General Physics and AstronomyResonanceFOS: Physical sciencesLaserTemperature measurementFluorescencelaw.inventionIonPhysics - Atomic PhysicsThermalisationlawAtomic physicsLaser-induced fluorescenceQuantum Physics (quant-ph)Condensed Matter - Statistical Mechanics
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Dynamical quantum repeater using cavity-QED and optical coherent states

2013

In the framework of cavity QED, we propose a quantum repeater scheme that uses coherent light and atoms coupled to optical cavities. In contrast to conventional schemes, we exploit solely the cavity QED evolution for the entire quantum repeater scheme and, thus, avoid any explicit execution of quantum logical gates. The entanglement distribution between the repeater nodes is realized with the help of pulses of coherent light interacting with the atom-cavity system in each repeater node. In our previous paper [D. Gonta and P. van Loock, Phys. Rev. A 86, 052312 (2012)], we already proposed a dynamical protocol to purify a bipartite entangled state using the evolution of atomic chains coupled …

PhysicsRepeaterQuantum PhysicsCavity quantum electrodynamicsPhysics::OpticsFOS: Physical sciencesQuantum entanglementAtomic and Molecular Physics and OpticsQuantum mechanicsLogic gateCoherent statesNode (circuits)Quantum information scienceQuantum Physics (quant-ph)Quantum
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Hybrid quantum repeater for qudits

2017

We present a "hybrid quantum repeater" protocol for the long-distance distribution of atomic entangled states beyond qubits. In our scheme, imperfect noisy entangled pairs of two qudits, i.e., two discrete-variable $d$-level systems, each of, in principle, arbitrary dimension $d$, are initially shared between the intermediate stations of the channel. This is achieved via local, sufficiently strong light-matter interactions, involving optical coherent states and their transmission after these interactions, and optical measurements on the transmitted field modes, especially (but not restricted to) efficient continuous-variable homodyne detections ("hybrid" here refers to the simultaneous expl…

PhysicsRepeaterQuantum PhysicsDegrees of freedom (statistics)FOS: Physical sciencesQuantum PhysicsQuantum entanglement01 natural sciences010305 fluids & plasmasTransmission (telecommunications)QubitQuantum mechanics0103 physical sciencesCoherent statesQutritQuantum Physics (quant-ph)010306 general physicsQuantumPhysical Review A
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The role of auxiliary states in state discrimination with linear optical evices

2001

The role of auxiliary photons in the problem of identifying a state secretly chosen from a given set of L-photon states is analyzed. It is shown that auxiliary photons do not increase the ability to discriminate such states by means of a global measurement using only optical linear elements, conditional transformation and auxiliary photons.

PhysicsSet (abstract data type)Quantum PhysicsPhotonTransformation (function)Physics::OpticsFOS: Physical sciencesStatistical physicsState (functional analysis)Photon states quantum opticsQuantum Physics (quant-ph)Optical linear elementAtomic and Molecular Physics and Optics
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Time-optimal control of the purification of a qubit in contact with a structured environment

2019

We investigate the time-optimal control of the purification of a qubit interacting with a structured environment, consisting of a strongly coupled two-level defect in interaction with a thermal bath. On the basis of a geometric analysis, we show for weak and strong interaction strengths that the optimal control strategy corresponds to a qubit in resonance with the reservoir mode. We investigate under which conditions qubit coherence and correlation between the qubit and the environment can speed up the control process.

PhysicsSpeedupGeometric analysisStrong interactionQuantum PhysicsOptimal controlTime optimalTopology01 natural sciences010305 fluids & plasmasComputer Science::Emerging TechnologiesQubit0103 physical sciencesThermal010306 general physicsCoherence (physics)Physical Review A
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