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The Schrodinger Equation
The Schrodinger Equation

... What does this derivative work out to be?? ...
Geometric Entropy of Self-Gravitating Systems
Geometric Entropy of Self-Gravitating Systems

... recognisable, and it provides in fact a unifying viewpoint. The geometric nature of entropy in GR can be understood only after the problem has been split into two parts, one of them being deeply geometrical provided one gives up a control on the other part. This is not a peculiarity of GR. In any ma ...
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Non aligned hydrogen molecular ion in strong magnetic fields

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... these conditions the field-induced velocity of the electrons can easily be much greater than the electron thermal velocity, and the distance traversed by an electron in one period of the highfrequency field can be appreciably greater than the Debye radius. The theoretical investigation of a plasma s ...
Phys. Rev. Lett
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... from the OAM degree of freedom to the polarization one. Analogously to the previous analysis, the experimental Poincaré sphere vectors obtained after the l !  conversion are reported in Fig. 2(d). Such transferrer can be, for example, exploited within a measurement apparatus for analyzing both  a ...
Femtosecond quantum fluid dynamics of helium atom under an
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Conductance of a quantum wire in the Wigner crystal regime
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Effective ergospheres of magnetized black holes and the Kerr
Effective ergospheres of magnetized black holes and the Kerr

... leads to new gravimagnetic effects is not only of direct astrophysical interest. In addition, this theory has recently attracted interest in connection with the possibility of deriving exact solutions of the Einstein-Maxwell equations which describe these effects.7-' Although the influence of a magn ...
Fulltext PDF - Indian Academy of Sciences
Fulltext PDF - Indian Academy of Sciences

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... measurements, direct study of new particles and new phenomena, and indirect searches through SM processes are all important at ILC. TeV physics explored at LHC and ILC will lead to new understanding of unification and cosmology. ...
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... sure this time that the answer exists. It was a lucky coincidence that just in this period Dzyaloshinskii, in collaboration with Abrikosov and Gorkov, worked on developing the Matsubara diagram technique for the solution of equilibrium problems in the quantum many-body theory. We decided to try this ...
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Janiszewski_washington_0250E_13369
Janiszewski_washington_0250E_13369

... space is radically different. This is concluded from examining the entropy of black holes. A black hole is a solution to a gravitational theory that contains regions that are causally disconnected from an asymptotic region. This means that there are observers inside the black hole region who can nev ...
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Holism and Structuralism in U(1) Gauge Theory - Philsci

... of gauge theories as well, has two wings, occupied by those who advocate either the Hamiltonian or the Lagrangian formalism to represent gauge theories. Among philosophers of physics we find John Earman as one of the strongest supporters of the Hamiltonian view (cf. his 2003, see also Belot and Earm ...
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ppt - Harvard Condensed Matter Theory group

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Relativistic Adiabatic Approximation and Geometric Phase

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Einstein`s contributions to atomic physics

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Quantum Entanglement in Many-body Systems

... that the concepts of entanglement and the entanglement properties of many-body systems are introduced to those curious readers having no experience in this field. Quantum entanglement is a non-local correlation between two or more quantum systems. This type of correlation is purely quantum mechanica ...
Rigorous Approach to Bose-Einstein Condensation
Rigorous Approach to Bose-Einstein Condensation

... refinement and improvement of the techniques mentioned above merging the last two steps in to a single one, called magneto-optical cooling. These experiments revealed the hidden condensation potential of alkali atoms and their cooling-favouring structure. These were expected to have well-defined and ...
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Pitkanen_03B

... 1. Basic Motions and Ideas The conflict between the non-determinism of state function reduction and determinism of time evolution of the Schröodinger equation is serious enough a problem to motivate the attempt to extend physics to a theory of Consciousness by raising the observer from an outsider ...
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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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