arXiv · 1705.04817
The spin resonance clock transition of the endohedral fullerene $^{15}\mathrm{N@C}_{60}$
Abstract
The endohedral fullerene $^{15}\mathrm{N@C}_{60}$ has narrow electron paramagnetic resonance lines which have been proposed as the basis for a condensed-matter portable atomic clock. We measure the low-frequency spectrum of this molecule, identifying and characterizing a clock transition at which the frequency becomes insensitive to magnetic field. We infer a linewidth at the clock field of 100 kHz. Using experimental data, we are able to place a bound on the clock's projected frequency stability. We discuss ways to improve the frequency stability to be competitive with existing miniature clocks.
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R. T. Harding, S. Zhou, J. Zhou, T. Lindvall, W. K. Myers, A. Ardavan, G. A. D. Briggs, K. Porfyrakis, E. A. Laird. 2017-05-13. The spin resonance clock transition of the endohedral fullerene $^{15}\mathrm{N@C}_{60}$. https://doi.org/10.1103/physrevlett.119.140801
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