Atom bottom-up manipulation controlled by light for nanobattery use

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Abstract

We propose a new design of the atom bottom-up technique that uses an optical trapping tool to form the atom trapping layer within a thin film grating. By using a PANDA ring resonator, where atoms can be trapped, pumped and controlled by light, where finally, the trapped atoms/molecules can be selected, filtered, and embedded within the required thin film grating layers, which later can form the nanobattery. In application, P-type or N-type atom can be prepared, trapped and embedded within the desired thin film layers, where finally, the nanobattery can be manipulated. The theoretical background of light pulse in a PANDA ring resonator is also reviewed. © 2012 Wiley Periodicals, Inc.

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atom bottom up, atom trapping, nanobattery, nanoelectronics, nanomaterial

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Microwave and Optical Technology Letters, 54(4), 1097-1100, 2012

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