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Quantum speed limit for relativistic spin-0 and spin-1 bosons on commutative and noncommutative planes

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arxiv 1703.01063 v3 pith:GK7UN75W submitted 2017-03-03 hep-th

classification hep-th
keywords quantumspeedcommutativefieldmagneticaveragebosonsexceed
verification ladder T0 review T1 audit T2 compute T3 formal
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Quantum speed limits of relativistic charged spin-0 and spin-1 bosons in the background of a homogeneous magnetic field are studied on both commutative and oncommutative planes. We show that, on the commutative plane, the average speeds of wave packets along the radial direction during the interval in which a quantum state evolving from an initial state to the orthogonal final one can not exceed the speed of light, regardless of the intensities of the magnetic field. However, due to the noncommutativity, the average speeds of the wave packets on noncommutative plane will exceed the speed of light in vacuum provided the intensity of the magnetic field is strong enough. It is a clear signature of violating Lorentz invariance in quantum mechanics region.

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