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      Nanofabrication of high Q, transferable, diamond resonators

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          Abstract

          Advancement of diamond based photonic circuitry requires robust fabrication protocols of key components, including diamond resonators and cavities. Here, we present 1D (nanobeam) photonic crystal cavities generated from single crystal diamond membranes utilising a metallic tungsten layer as a restraining, conductive and removable hard mask. The use of tungsten instead of a more conventional silicon oxide layer enables good repeatability and reliability of the fabrication procedures. The process yields high quality diamond cavities with quality factors (Q factors) approaching 10\(^\)4. Finally, we show that the cavities can be picked up and transferred onto a trenched substrate to realise fully suspended diamond cavities. Our fabrication process demonstrates the capability of diamond membranes as modular components for broader diamond based quantum photonic circuitry.

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          Author and article information

          Journal
          15 January 2021
          Article
          2101.06358
          cd13b346-42ad-4543-9bd9-1967dc0805d8

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          physics.optics cond-mat.mtrl-sci physics.app-ph

          Condensed matter,Technical & Applied physics,Optical materials & Optics
          Condensed matter, Technical & Applied physics, Optical materials & Optics

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