960化工网
Single crystal diamond membranes for nanoelectronics†
Kerem Bray,Hiromitsu Kato,Rodolfo Previdi,Russell Sandstrom,Kumaravelu Ganesan,Masahiko Ogura,Toshiharu Makino,Satoshi Yamasaki,Andrew P. Magyar,Milos Toth,Igor Aharonovich
Nanoscale Pub Date : 01/30/2018 00:00:00 , DOI:10.1039/C7NR09097H
Abstract

Single crystal, nanoscale diamond membranes are highly sought after for a variety of applications including nanophotonics, nanoelectronics and quantum information science. However, so far, the availability of conductive diamond membranes has remained an unreachable goal. In this work we present a complete nanofabrication methodology for engineering high aspect ratio, electrically active single crystal diamond membranes. The membranes have large lateral directions, exceeding ∼500 × 500 μm2 and are only several hundreds of nanometers thick. We further realize vertical single crystal p–n junctions made from the diamond membranes that exhibit onset voltages of ∼10 V and a current of several mA. Moreover, we deterministically introduce optically active color centers into the membranes, and demonstrate for the first time a single crystal nanoscale diamond LED. The robust and scalable approach to engineer the electrically active single crystal diamond membranes offers new pathways for advanced nanophotonic, nanoelectronic and optomechanical devices employing diamond.

Graphical abstract: Single crystal diamond membranes for nanoelectronics
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