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Weis, C.D. (author), Schuh, A. (author), Batra, A. (author), Persaud, A. (author), Rangelow, I.W. (author), Bokor, J. (author), Lo, C.C. (author), Cabrini, S. (author), Sideras-Haddad, E. (author), Fuchs, G.D. (author), Hanson, R. (author), Awschalom, D.D. (author), Schenkel, T. (author)
The ability to inject dopant atoms with high spatial resolution, flexibility in dopant species, and high single ion detection fidelity opens opportunities for the study of dopant fluctuation effects and the development of devices in which function is based on the manipulation of quantum states in single atoms, such as proposed quantum computers....
journal article 2008
document
Fuchs, G.D. (author), Dobrovitski, V.V. (author), Hanson, R. (author), Batra, A. (author), Weis, C.D. (author), Schenkel, T. (author), Awschalom, D.D. (author)
We use single-spin resonant spectroscopy to study the spin structure in the orbital excited state of a diamond nitrogen-vacancy (N-V) center at room temperature. The data show that the excited-state spin levels have a zero-field splitting that is approximately half of the value of the ground state levels, a g factor similar to the ground state...
journal article 2008