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[4] [5] Quite remarkably it was shown that environmental effects, such as non-Markovian dynamics can speed up quantum processes, [6] which was verified in a cavity QED experiment. [7] QSL have been used to explore the limits of computation [8] [9] and complexity. In 2017, QSLs were studied in a quantum oscillator at high temperature. [10]
Quil is being developed for the superconducting quantum processors developed by Rigetti Computing through the Forest quantum programming API. [5] [6] A Python library called pyQuil was introduced to develop Quil programs with higher level constructs. A Quil backend is also supported by other quantum programming environments. [7] [8]
Download as PDF; Printable version ... 12 references as further reading (out of "the 10 10 5000 quantum algorithm tutorials ... " and "Hacking at Quantum Speed with ...
In quantum information theory, the classical capacity of a quantum channel is the maximum rate at which classical data can be sent over it error-free in the limit of many uses of the channel. Holevo , Schumacher, and Westmoreland proved the following least upper bound on the classical capacity of any quantum channel N {\displaystyle {\mathcal ...
Their theorem based in control theory states that for a finite-dimensional, closed-quantum system, the system is completely controllable, i.e. an arbitrary unitary transformation of the system can be realized by an appropriate application of the controls [20] if the control operators and the unperturbed Hamiltonian generate the Lie algebra of ...
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s = spin quantum number; m s = spin magnetic quantum number; ℓ = Azimuthal quantum number; m ℓ = azimuthal magnetic quantum number; j = total angular momentum quantum number; m j = total angular momentum magnetic quantum number
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