N-qubit quantum memory through a well-defined sequence of optical pulses
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Engineering topics
Publications and source records attributed to Scully, M. O..
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Electrophoresis has contributed significantly to the methodology of biological sciences, and shows the potential for large scale fractionation of a wide range of medically important substances, including living cells. Gravity plays an important role in the electrophoretic process, and hence the importance of the NASA effort to develop a zero-gravity separation facility as part of its shuttle program. The current state of art in electrophoresis is reviewed with particular emphasis on the role of gravity and the possible use of istachophoresis. This technique utilizes a discontinuous buffer system, and appears to be the only high resolution electrophoretic technique currently available for separation of living cells.
Self induced transparency in ruby attenuator, detailing phase relaxation effects at various temperatures
Coherent radiative phenomena with nontrivial zero-pi pulses propagation behavior in attenuating media
Laser quantum theoretical analysis, considering atomic thermal motion, photon emission and absorption induced recoil effects on lasing threshold and operating frequency
Laser oscillation buildup from quantum noise, deriving equations of motion for moments of photon distribution and time dependence
Superconducting tunnel junctions radiation emission, discussing superconductivity theory
Laser oscillation build up from quantum noise
Velocity distribution of atoms evaporating from superfluid He II at low temperatures, noting roton shifting and multiexcitation processes
Quantum mechanics method for obtaining photocount distribution from optical maser photoelectron counting statistics
Atomic coherence and inhomogeneous broadening effects on laser amplifier ultrashort electromagnetic high peak power pulses
Photoelectric effect without photons, discussing classical field falling on quantized atomic electron
Quantum theory of optical maser, calculating laser radiation spectrum from two time correlation function derived from equations of motion
Mathematical model of photoelectric effect without photons
Quantum theory of laser having only single-mode oscillation and ignoring atomic motion and spatial variations in cavity mode
Photoelectron counting statistics produced by fully quantum mechanical laser