Journal article

Au-rich filamentary behavior and associated subband gap optical absorption in hyperdoped Si

W Yang, AJ Akey, LA Smillie, JP Mailoa, BC Johnson, JC McCallum, D MacDonald, T Buonassisi, MJ Aziz, JS Williams

Physical Review Materials | AMER PHYSICAL SOC | Published : 2017

Abstract

Au-hyperdoped Si, synthesized by ion implantation and pulsed laser melting, is known to exhibit a strong sub-band gap photoresponse that scales monotonically with the Au concentration. However, there is thought to be a limit to this behavior since ultrahigh Au concentrations (>1×1020cm-3) are expected to induce cellular breakdown during the rapid resolidification of Si, a process that is associated with significant lateral impurity precipitation. This work shows that the cellular morphology observed in Au-hyperdoped Si differs from that in conventional, steady-state cellular breakdown. In particular, Rutherford backscattering spectrometry combined with channeling and transmission electron mi..

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University of Melbourne Researchers

Grants

Awarded by Australian Research Council


Funding Acknowledgements

We acknowledge the Australian Research Council (Grant No. LP160100981) and the US Army (Contract No. FA5209-16-P-0104) for partial financial support of this project. The microscopy work was performed at the ANU node of AMMRF. We acknowledge Prof. Dougal McCulloch from RMIT for the EDS. We further acknowledge access to NCRIS (ANFF and the Heavy Ion Accelerator Capability) facilities at the ANU.