English

Electron spin relaxation of single phosphorus donors in metal-oxide-semiconductor nanoscale devices

Mesoscale and Nanoscale Physics 2019-05-16 v2

Abstract

We analyze the electron spin relaxation rate 1/T11/T_1 of individual ion-implanted 31^{31}P donors, in a large set of metal-oxide-semiconductor (MOS) silicon nanoscale devices, with the aim of identifying spin relaxation mechanisms peculiar to the environment of the spins. The measurements are conducted at low temperatures (T100T\approx 100~mK), as a function of external magnetic field B0B_0 and donor electrochemical potential μD\mu_{\rm D}. We observe a magnetic field dependence of the form 1/T1B051/T_1\propto B_0^5 for B03B_0\gtrsim 3\, T, corresponding to the phonon-induced relaxation typical of donors in the bulk. However, the relaxation rate varies by up to two orders of magnitude between different devices. We attribute these differences to variations in lattice strain at the location of the donor. For B03B_0\lesssim 3\,T, the relaxation rate changes to 1/T1B01/T_1\propto B_0 for two devices. This is consistent with relaxation induced by evanescent-wave Johnson noise created by the metal structures fabricated above the donors. At such low fields, where T1>1T_1>1\,s, we also observe and quantify the spurious increase of 1/T11/T_1 when the electrochemical potential of the spin excited state |\uparrow\rangle comes in proximity to empty states in the charge reservoir, leading to spin-dependent tunneling that resets the spin to |\downarrow\rangle. These results give precious insights into the microscopic phenomena that affect spin relaxation in MOS nanoscale devices, and provide strategies for engineering spin qubits with improved spin lifetimes.

Keywords

Cite

@article{arxiv.1812.06644,
  title  = {Electron spin relaxation of single phosphorus donors in metal-oxide-semiconductor nanoscale devices},
  author = {Stefanie B. Tenberg and Serwan Asaad and Mateusz T. Mądzik and Mark A. I. Johnson and Benjamin Joecker and Arne Laucht and Fay E. Hudson and Kohei M. Itoh and A. Malwin Jakob and Brett C. Johnson and David N. Jamieson and Jeffrey C. McCallum and Andrew S. Dzurak and Robert Joynt and Andrea Morello},
  journal= {arXiv preprint arXiv:1812.06644},
  year   = {2019}
}

Comments

14 pages, 8 figures. Version 2 has extensive text revisions, typo corrections, and two extra authors