Moein Kazemi, Mehdi Keshavarz, Mark E. Turiansky, John L. Lyons, N. V. Abrosimov, Stephanie Simmons, Daniel Higginbottom, M.L.W. Thewalt
Efficient single-photon emitters are desirable for quantum technologies including quantum networks and photonic quantum computers. We investigate the T center, a telecommunications-band emitter in silicon, and find a strong isotope dependence of its excited-state lifetime. In particular, the lifetime of the deuterium T center is over five times longer than the common protium variant. We measure an isotope-dependent shift of the local vibrational carbon-hydrogen stretch mode energy and show through explicit first-principles calculations that the dramatic lifetime difference is consistent with strong suppression of nonradiative decay due to the reduced energy of this mode for deuterium T centers. Our results imply that the deuterium T center approaches unit quantum efficiency, enabling more efficient single-photon sources and quantum memories and improved readout of the T center electron spin.