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Titlebook: Numerical Methods for Time-Resolved Quantum Nanoelectronics; Joseph Weston Book 2017 Springer International Publishing AG 2017 Numerical Q

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Joseph Weston85. It is intended to be an introduction to the theory of numbers. The audience consisted largely of undergraduate students with no more background than high school mathematics. The presentation was thus kept as elementary and self-contained as possible. However, because the discussion was, generall
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Overview,This thesis deals with the problem of simulating and understanding transport of electrons in quantum devices when the device is subjected to time-dependent perturbations such as pulses of voltage on contacts or electrostatically coupled gates, electromagnetic radiation etc.
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Numerical Algorithms for Time-Resolved Quantum TransportIn Sect. . we saw that wavefunction-based methods are the current state of the art for the types of systems we want to study (a large number of degrees of freedom and long times). In this chapter we shall explain the algorithms used to compute time-dependent observables using our wavefunction-based “source-sink” algorithm.
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Split Wire Flying QubitIn recent years there has been a big push to develop platforms for quantum computation.
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Time-Resolved Dynamics of Josephson JunctionsThe source-sink algorithm presented in Sect. . allows us to perform time-resolved simulations of quantum transport that scale linearly with the required maximum simulation time.
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