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The problem of a particle confined in a one-dimensional infinite square well potential lies at the heart of non- relativistic quantum mechanics, being the simplest problem
We then propose a plausible model of such interactions and demonstrate within this model that steady-state entan- glement between the modes of the optical probes is al- ways
In high energy physics, quantifying the entangle- ment of states of a quantum field has applications to a vari- ety of problems [7–9], from the AdS/CFT correspondence [10], through
We derive an exact solution for the steady state of this interacting driven- dissipative system, and use it show that the sys- tem permits the preparation and stabilization of
If the atom is moving, however, then a photon emitted in the direction of motion of the atom will have, by virtue of the Doppler shift, a higher frequency and hence a higher
Measured DSOC at zero time delay of the laser emission from the TA SLD in an external cavity as a function of the TA output power at 150 mA RW injection current. The
(a) Contrast of the EIA resonance with respect to the total absorbed probe-wave power in the cell at B=0 and (b) contrast with respect to the amplitude of the wide
The paper examines the prominent algorithm D-MORPH to search for the op- timal control of a quantum system in order to implement desired unitary evolution of the quantum system at