arXiv · 1503.05811
Spin relaxation and donor-acceptor recombination of Se$^+$ in 28-silicon
Abstract
Selenium impurities in silicon are deep double donors and their optical and electronic properties have been recently investigated due to their application for infrared detection. However, a singly-ionised selenium donor (Se$^{+}$) possesses an electron spin which makes it a potential candidate as a silicon-based spin qubit, with significant potential advantages compared to the more commonly studied group V donors. Here we study the electron spin relaxation ($T_1$) and coherence ($T_2$) times of Se$^{+}$ in isotopically purified 28-silicon, and find them to be up to two orders of magnitude longer than shallow group V donors at temperatures above $\sim 15$ K. We further study the dynamics of donor-acceptor recombination between selenium and boron, demonstrating that it is possible to control the donor charge state through optical excitation of neutral Se$^0$.
Explore related subjects
Keep this discovery
Roberto Lo Nardo, Gary Wolfowicz, Stephanie Simmons, Alexei M. Tyryshkin, Helge Riemann, Nikolai V. Abrosimov, Peter Becker, Hans-Joachim Pohl, Michael Steger, Stephen A. Lyon, Mike L. W. Thewalt, John J. L. Morton. 2015-03-19. Spin relaxation and donor-acceptor recombination of Se$^+$ in 28-silicon. https://doi.org/10.1103/physrevb.92.165201
Cite the original work for its findings. Save a collection to share your selection of sources.