3,900 research outputs found
Decay process of quantum open system at finite-temperature
Starting from the formal solution to the Heisenberg equation, we revisit an
universal model for a quantum open system with a harmonic oscillator linearly
coupled to a boson bath. The analysis of the decay process for a Fock state and
a coherent state demonstrate that this method is very useful in dealing with
the problems in decay process of the open system. For finite temperature, the
calculations of the reduced density matrix and the mean excitation number for
the open system show that an initial coherent state will evolve into a
temperature-dependant coherent state after tracing over the bath variables.
Also in short-time limit, a temperature-dependant effective Hamiltonian for the
open system characterizes the decay process of the open system
Simultaneous eigenstates of the number-difference operator and a bilinear interaction Hamiltonian derived by solving a complex differential equation
As a continuum work of Bhaumik et al who derived the common eigenvector of
the number-difference operator Q and pair-annihilation operator ab (J. Phys. A9
(1976) 1507) we search for the simultaneous eigenvector of Q and
(ab-a^{+}b^{+}) by setting up a complex differential equation in the bipartite
entangled state representation. The differential equation is then solved in
terms of the two-variable Hermite polynomials and the formal hypergeometric
functions. The work is also an addendum to Mod. Phys. Lett. A 9 (1994) 1291 by
Fan and Klauder, in which the common eigenkets of Q and pair creators are
discussed
Charge Qubit Storage and Its Engineered Decoherence via Microwave Cavity
We study the entanglement of the superconducting charge qubit with the
quantized electromagnetic field in a microwave cavity. It can be controlled
dynamically by a classical external field threading the SQUID within the charge
qubit. Utilizing the controllable quantum entanglement, we can demonstrate the
dynamic process of the quantum storage of information carried by charge qubit.
On the other hand, based on this engineered quantum entanglement, we can also
demonstrate a progressive decoherence of charge qubit with quantum jump due to
the coupling with the cavity field in quasi-classical state.Comment: 6 pages, 4 figure
TCT-622 Angiographic Outcomes in “One-Stop” Hybrid Coronary Revascularization vs. Percutaneous Coronary Intervention for the Treatment of Multivessel Coronary Artery Disease: A Propensity Score Matching Analysis
The pathological changes in the spinal cord after dural tear with and without autologous fascia repair
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