Abstract
A novel approach to the analysis of the gravitational well problem from the point of view of a second quantized description is discussed. The second quantized formalism enables us to study the effect of time-space non-commutativity in the gravitational well scenario; this study is hitherto unavailable in the literature. The corresponding first quantized theory reveals a leading order perturbation term of non-commutative origin. The latest experimental findings are used to estimate an upper bound on the time-space non-commutative parameter. Our results are found to be consistent with the order of magnitude estimations of other NC parameters reported earlier.
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