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VI TUNNELING TIMES AND SUPERLUMINALITY AEPHRAIM M
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... modern trends in semiconductor spintronics are based on employing spin-orbit coupling to achieve efficient spin injection and the manipulation of injected spins [4]. Generally, spintronics is interdisciplinary and integrates spins (magnetizations) with modern micro-, nano-, and opto-electronics, and ...
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... vertical components (orange) big enough to team up and cancel the little force. Since the tension is the same throughout the rope, the big tension forces shown acting at the middle are the same as the forces acting on the tree and mule. So the mule is pulled in the direction of the rope with a force ...
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... Equations, which describe any system of N interacting objects with internal degrees of freedom, are considered in §2. These equations are applied to system of two objects in §3. Unlike Newton’s mechanics here it is supposed that additivity of a momentum does not take place, i.e. momentum of the syst ...
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... • Fields existing in space can be used to explain interactions. (BI2) • The interactions of an object with other objects can be described by forces. (BI3) • Interactions between systems can result in changes in those systems. (BI4) • Changes that occur as a result of interactions are constrained by ...
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... a smooth surface with the same velocity. It would take much more force to stop the massive dump truck than to stop the toy truck in the same time interval. You have probably also noticed that a ball moving very fast stings your hands when you catch it, while a slow-moving ball causes no discomfort w ...
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Possibility of single-atom detection on a chip

... details of the cavity and its losses. A few more comments on the model introduced above may be in order. First, we assume that the atom is well localized and also atomic motion is treated classically in Sec. V. Our model is therefore not valid for the description of ultracold atoms, e.g., in a BEC. ...
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... stable rotars exist at resonances with the vacuum fluctuations of spacetime which eliminate energy loss. If the amplitude of the oscillating component was Aβ2/ , then there would be continuous radiation of energy. Energetic composite particles such as proton ...
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Photon polarization

Photon polarization is the quantum mechanical description of the classical polarized sinusoidal plane electromagnetic wave. Individual photon eigenstates have either right or left circular polarization. A photon that is in a superposition of eigenstates can have linear, circular, or elliptical polarization.The description of photon polarization contains many of the physical concepts and much of the mathematical machinery of more involved quantum descriptions, such as the quantum mechanics of an electron in a potential well, and forms a fundamental basis for an understanding of more complicated quantum phenomena. Much of the mathematical machinery of quantum mechanics, such as state vectors, probability amplitudes, unitary operators, and Hermitian operators, emerge naturally from the classical Maxwell's equations in the description. The quantum polarization state vector for the photon, for instance, is identical with the Jones vector, usually used to describe the polarization of a classical wave. Unitary operators emerge from the classical requirement of the conservation of energy of a classical wave propagating through media that alter the polarization state of the wave. Hermitian operators then follow for infinitesimal transformations of a classical polarization state.Many of the implications of the mathematical machinery are easily verified experimentally. In fact, many of the experiments can be performed with two pairs (or one broken pair) of polaroid sunglasses.The connection with quantum mechanics is made through the identification of a minimum packet size, called a photon, for energy in the electromagnetic field. The identification is based on the theories of Planck and the interpretation of those theories by Einstein. The correspondence principle then allows the identification of momentum and angular momentum (called spin), as well as energy, with the photon.
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