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Circuit QED: Superconducting Qubits Coupled to Microwave Photons
Circuit QED: Superconducting Qubits Coupled to Microwave Photons

Title Visible to near infrared conversion in Ce3+-Yb3+ Co
Title Visible to near infrared conversion in Ce3+-Yb3+ Co

Steady State Entanglement in Quantum Dot Networks
Steady State Entanglement in Quantum Dot Networks

... through the network has a large population of the singlet state with one electron on each of the outer dots. The main ingredient for achieving the large singlet population on the outer dots is the exchange splitting between the spin singlet and triplet states occupying two orbitals. We aim at tuning ...
Simulating electric field interactions with polar molecules
Simulating electric field interactions with polar molecules

... Progress in this direction is being made but very few general purpose computer programs exist for quantum mechanical modelling of molecule-field interactions. The multiconfiguration time-dependent Hartree (MCTDH) method7–9 is one possible option, and a robust, variational approach, RichMol, will soo ...
Chapter 5: Optical Processes in Semiconductors
Chapter 5: Optical Processes in Semiconductors

... carrier transition rates R, the rate-equations of carriers and photons and the optical gain g(ω,n) • Nonclassical description of the motion of bound electrons in the static force fields of the atomic nucleus or crystal lattice and a oscillating light wave • The equation of motion and polarization ha ...
Modern Physics by Serway, Moses, and Moyer (third
Modern Physics by Serway, Moses, and Moyer (third

... Raymond A. Serway received his doctorate at Illinois Institute of Technology and is Professor Emeritus at James Madison University. Dr. Serway began his teaching career at Clarkson University, where he conducted research and taught from 1967 to 1980. His second academic appointment was at James Madi ...
Introduction to Quantum Information
Introduction to Quantum Information

... key idea was that probabilities depend on what you know; if we acquire additional information then this modifies the probabilities. Today such reasoning is uncontentious and forms part of the prevailing paradigm in much of probability theory (Jeffreys, 1939; Box and Tiao 1973; Bretthorst 1988; Lee 1 ...
Introduction to Nonequilibrium Quantum Field Theory
Introduction to Nonequilibrium Quantum Field Theory

Homonuclear ionizing collisions of laser-cooled
Homonuclear ionizing collisions of laser-cooled

Charge and spin quantum fluids generated by many
Charge and spin quantum fluids generated by many

... was found that all energy eigenstates associated with the 1D Hubbard model Bethe-ansatz solution [1,2] can be described in terms of occupancy configurations of pseudoparticles. According to the studies of Ref. [18] there is an infinite number of pseudoparticle branches: the c pseudoparticles and the ...
Quantum Expanders: Motivation and Constructions
Quantum Expanders: Motivation and Constructions

... showed that random graphs are “almost Ramanujan” and Alon and Boppana (see [33]) showed Ramanujan graphs have almost the best possible algebraic expansion. Several works [12, 2, 3, 24] showed intimate connections between set expansion and algebraic expansion. We refer the reader, again, to the surve ...
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Classical canonical transformation theory as a tool to describe

... classically forbidden tunnelling processes. They are also organically embedded into a hopping method to incorporate tunnelling e†ects into classical trajectory simulations of chemical reactions. The applicability of the proposed scheme is demonstrated for the collinear H ] H exchange reaction using ...
Quantum Energy Teleportation - UWSpace
Quantum Energy Teleportation - UWSpace

... In some sense the entropy is a measure of uncertainty in a random variable. Here is a rough sketch of how this concept applies to certain situations: say we have an alphabet X and for any given message there is a probability p(x) that a given letter X is x. Then, if we consider how one could optimal ...
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Thesis - Archive ouverte UNIGE

... 3 Gravitational Radiation in Hořava gravity 3.1 Action for khronometric theory at low energies 3.2 Equations of motion in the far-zone . . . . . . . ...
Electric dipoles at ultralow temperatures
Electric dipoles at ultralow temperatures

... discussion to a particular “minimal realistic model,” so that the most important physics is incorporated, but the arithmetic is not overwhelming. Although we discuss molecular dipoles in several contexts, our main focus is on polar molecules that possess a Λ doublet in their ground state. These mole ...
Auger cascade processes in xenon and krypton studied by electron
Auger cascade processes in xenon and krypton studied by electron

... for months, can be done instantly with the computers of today. Now, computational efficiency is challenged by the inclusion of other interactions, like relativistic effects and electron correlation, and the simultaneous optimization of several variables. The most striking evidence supporting the atomic ...
Controlling Cold Collisions of Polar Molecules with External
Controlling Cold Collisions of Polar Molecules with External

... such processes are a first step toward understanding and accurately modeling ultracold chemical reactions [67, 68, 69, 70, 71, 72, 73, 74, 75, 76]. These studies focused on important issues such as the life time of vibrationally excited molecules in the presence of other molecules or atoms. It might ...
A Course in Consciousness
A Course in Consciousness

... fact, one could define "normality" as the condition of having such experiences. Now we must consider experiences which are also purely internal to the mind, but which fall outside the bounds of normality as defined above. These types of experiences we might call purely subjective since they are not ...
Optical properties of cylindrical nanowires
Optical properties of cylindrical nanowires

... wire radius. This quantum effect has already been observed in the shift in the fundamental band gap [3], but based on atomistic theories[4][5] it is also predicted that quantum confinement causes drastic changes in the polarization anisotropy of nanostructures. In this paper we will analyze the opt ...
Interpreting Heisenberg Interpreting Quantum States - Philsci
Interpreting Heisenberg Interpreting Quantum States - Philsci

... overview of elementary features of that formalism for those who know nothing about it at all. Trying to express himself in a manner that is comprehensible also to non-physicists, Heisenberg presents his thoughts in an non-technical and sometimes ambiguous way. As will become clear in what follows, h ...
Three Myths about Time Reversal in Quantum Theory
Three Myths about Time Reversal in Quantum Theory

... Both Callender and Albert argue that there is something unnatural about supposing time reversal does more than reverse the order of states in a trajectory. The standard expression of time reversal maps a trajectory w(t) to Tw(2t), reversing the order of a trajectory t ↦ 2t but also transforming inst ...
The shock tube as wave reactor for kinetic studies and material
The shock tube as wave reactor for kinetic studies and material

... reliable. Use of the shock tube as a wave reactor for studies on material synthesis is of very recent origin [4]. After Schott and Kinsey [5] demonstrated that the course of an exothermic reaction like H2 1 O2 ! products, highly diluted in argon, could be satisfactorily resolved using a shock tube, ...
Synthetic Quantum Systems
Synthetic Quantum Systems

... two superconductors. For the latter the barrier consists of a thin insulator. However, the similarity arises from the fact that all three systems are describable within a similar model. The modes are associated with two macroscopic wave functions with an overall phase for each. These wave functions ...
New Journal of Physics Quantum interference-induced stability of repulsively Lea F Santos
New Journal of Physics Quantum interference-induced stability of repulsively Lea F Santos

... would be expected to cause strong scattering of BPs if a BP could resonantly decay into an excitation localized on the defect and a propagating excitation. This resonance can be achieved by tuning the defect site energy to a value close to the interaction energy. We show, however, that such inelasti ...
Zero Point Energy
Zero Point Energy

... discovered in 1958 by the Dutch physicist M. J. Sparnaay. Mr Sparnaay continued the experiments carried out by Hendrick B. G. Casimir in 1948 which showed the existence of a force between two uncharged plates which arose from electromagnetic energy surrounding the plates in a vacuum. Mr Sparnaay dis ...
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Wave–particle duality

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