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Maximum work in minimum time from a conservative quantum system
Maximum work in minimum time from a conservative quantum system

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Cryptographic distinguishability measures for quantum

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... There is also a traveling wave solution for 0 < c < 2 However, in that case the solution becomes negative near 0 since f = 0 is a spiral point. This solution is therefore not relevant to the biological application we have and mind. Moreover, by the maximum principle, it cannot arise from nonnegative ...
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... For each reaction, the formulae of the reactants and the products have their state indicated in brackets and where more than one reactant or product is present, they are separated by a + sign. The reactants and products are separated by an →. The formulas of the compounds were checked and are correc ...
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... questions and stimulates insights that are of broad and fundamental interest in quantum information science. And .. whatever the applications turn out to be, the quest for a large-scale quantum computer is (in my opinion) one of the grand scientific challenges of the 21st century. Will we be able to ...
quantum number - Reseda High School
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... quantized nature of energy and the properties of individual atoms. In fact, Einstein's Nobel Prize was awarded for his work in the photoelectric effect and demonstrating its fundamental important, not for his famous E=mc2 equation. ...
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... The potential impact of quantum computing has stimulated a worldwide effort to develop the necessary experimental and theoretical resources 关1,2兴. The most challenging aspect of quantum computing is the requirement for ultrahigh fidelity in each step. The necessary starting point is initialization o ...
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... Though we have simplified the problem by the assumption of symmetric initial values, we are still far from its explicit solution. The solution would rely on the path integration along different paths by which two sites can be connected in a presupposed number of steps. Each path would be assigned a ...
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... effective barrier due to diffusion over oscillator eigenstates. It recalls thermal activation [12], except that the diffusion is due to quantum fluctuations that come along with the oscillator relaxation, with h̄ playing the role of temperature in thermal activation. Quantum activation was first see ...
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Relativistic quantum mechanics

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