arXiv · 1804.00350
High pressure, high temperature molecular doping of nanodiamond
Abstract
The development of color centers in diamond as the basis for emerging quantum technologies has been limited by the need for ion implantation to create the appropriate defects. We present a versatile method to dope diamond without ion implantation, by synthesis of a doped amorphous carbon precursor and transformation at high temperatures and high pressures. To explore this bottom-up method for color center generation, we rationally create silicon-vacancy defects in nanodiamond and investigate them for optical pressure metrology. In addition, we show that this process can generate noble gas defects within diamond from the typically-inactive argon pressure medium, which may explain the hysteresis effects observed in other high pressure experiments and the presence of noble gases in some meteoritic nanodiamonds. Our results illustrate a general method to produce color centers in diamond, and may enable the controlled generation of designer defects.
Explore related subjects
Keep this discovery
Matthew J Crane, Alessio Petrone, Ryan A. Beck, Matthew B. Lim, Xuezhe Zhou, Xiaosong Li, Rhonda M. Stroud, Peter J. Pauzauskie. 2018-04-01. High pressure, high temperature molecular doping of nanodiamond. https://arxiv.org/abs/1804.00350
Cite the original work for its findings. Save a collection to share your selection of sources.