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Stability conditions of diatomic molecules in
Stability conditions of diatomic molecules in

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... interacting trapped quantum gases [4]. So far, most of the experimental results in this area can be very accurately modeled by mean-field methods and its extensions, based on the Gross-Pitaevskii (GP) equation and Bogoliubovde Gennes equations for bosonic gases [5], and on the BCS theory for fermioni ...
A Topos for Algebraic Quantum Theory
A Topos for Algebraic Quantum Theory

Quantum Cohomology via Vicious and Osculating Walkers
Quantum Cohomology via Vicious and Osculating Walkers

The Casimir Effect: Some Aspects
The Casimir Effect: Some Aspects

here
here

Document
Document

... convergence and related topics will not be gone into until the need arises. It is desirable to have a special name for describing the vectors which are connected with the states of a system in quantum mechanics, whether they are in a space of a finite or an infinite number of dimensions. We shall ca ...
13_chapter 2
13_chapter 2

... polarization, which occurs due to the formation of dipole chains under the influence of the applied field. Dielectric materials can be classified broadly into two categories as polar [46] and non-polar materials, depending on charge distribution in molecule. Non-polar dielectric materials consist of ...
Quantum Annealing with Markov Chain Monte Carlo Simulations
Quantum Annealing with Markov Chain Monte Carlo Simulations

... the state |ψ, the measurement outcome  is a random variable that takes values in {λ1 , λ2 , . . . , λr }, with probability distribution P ( = λa ) = tr(Qa |ψψ|) = ψ|Qa |ψ, a = 1, 2, . . . , r. Statistically, we may perform measurements on M for the quantum system multiple times to obtain meas ...
Graphene and Relativistic Quantum Physics
Graphene and Relativistic Quantum Physics

Par cles and Interac ons
Par cles and Interac ons

... •  The gravity is aYrac*ve, all other forces can also be repulsive •  The interac*ons are also responsible of the nucleus decays ...
Space charge-limited emission studies using Coulomb`s Law
Space charge-limited emission studies using Coulomb`s Law

Quantum Theory of Molecular Magnetism - cond
Quantum Theory of Molecular Magnetism - cond

... polyoxometalate {Mo72 Fe30 } [14] contains 30 iron ions of spin s = 5/2. Although these materials appear as macroscopic samples, i. e. crystals or powders, the intermolecular magnetic interactions are utterly negligible as compared to the intra-molecular interactions. Therefore, measurements of thei ...
Field line motion in classical electromagnetism John W. Belcher and Stanislaw Olbert
Field line motion in classical electromagnetism John W. Belcher and Stanislaw Olbert

... when we have a set of discrete sources 共point charges, point dipoles, etc.兲. In other situations, for example, a continuous charge density, it is not appropriate 共see Sec. VII C兲. We show in Fig. 3 two frames of an animation using this definition of the velocity of electric field lines to animate th ...
electric fields from symmetric charge distributions
electric fields from symmetric charge distributions

Can gas hydrate structures be described using - e-Spacio
Can gas hydrate structures be described using - e-Spacio

Mirror QCD and Cosmological Constant
Mirror QCD and Cosmological Constant

... literature [38–40] as a promising solution of the naturalness problem in the SM protecting the weak scale from large radiative corrections. Various phenomenological implications of such a “Mirror World” concept have been discussed, e.g., in Ref. [41]. In particular, the mirror color SU (3) gauge gro ...
Dirac Equation
Dirac Equation

Kondo-model for quantum-dots with spin
Kondo-model for quantum-dots with spin

... curves were offset by 0.008e2 /h for clarity. The data were taken for an odd occupied Coulomb diamond at gate voltage Vg = −4.96V.[23] (Note that at finite magnetic fields features are broadened due to noise induced by the magnet power supply). . . . . . . . . . . . . . . . . . 2.1 Schematic representa ...
Calculation of Van der Waals interaction strength between rubidium
Calculation of Van der Waals interaction strength between rubidium

Lecture 6, Parity and Charge Conjugation
Lecture 6, Parity and Charge Conjugation

... scalar vector pseudovector (axial vector) ...
arXiv:quant-ph/0202122 v1 21 Feb 2002
arXiv:quant-ph/0202122 v1 21 Feb 2002

... Quantum information and quantum computation have recently attracted a lot of interest. The promise of new technologies like safe cryptography and new “super computers”, capable of handling otherwise untractable problems, has excited not only researchers from many different fields like physicists, math ...
PrntFile text - Electrogravity
PrntFile text - Electrogravity

Theoretical Modeling of Transport in Nanostructures June 02, 2009
Theoretical Modeling of Transport in Nanostructures June 02, 2009

... Interest in electronic transport properties of molecular wires and junctions has continuously increased during the last decades. The basis for this interest comes both from a fundamental scientific viewpoint and the possibility of technological applications as current electronic devices continue to ...
Compatibility in Multiparameter Quantum Metrology
Compatibility in Multiparameter Quantum Metrology

... prioritise the uncertainty cost of different parameters. As in the single parameter case, the bound is saturable in the limit of an infinite number of repetitions of an experiment using the maximum likelihood estimator [25]. The first substantial difference of multiparameter metrology from the single pa ...
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History of quantum field theory

In particle physics, the history of quantum field theory starts with its creation by Paul Dirac, when he attempted to quantize the electromagnetic field in the late 1920s. Major advances in the theory were made in the 1950s, and led to the introduction of quantum electrodynamics (QED). QED was so successful and ""natural"" that efforts were made to use the same basic concepts for the other forces of nature. These efforts were successful in the application of gauge theory to the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics. Efforts to describe gravity using the same techniques have, to date, failed. The study of quantum field theory is alive and flourishing, as are applications of this method to many physical problems. It remains one of the most vital areas of theoretical physics today, providing a common language to many branches of physics.
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