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Micro- and nanofabrication techniques for single crystal diamond photonics

Quack, Niels
•
Galland, Christophe  
•
Losero, Elena
Agio, Mario
•
Castelletto, Stefania
January 1, 2025
Nanophotonics with Diamond and Silicon Carbide for Quantum Technologies

Synthetically grown high-quality single crystal diamond is an excellent base material for quantum photonics. Planar single crystal diamond substrates several square millimeters in size are nowadays commercially available. They can be precisely structured using micro- and nanofabrication techniques that are common in the semiconductor industry. This chapter provides an introduction to diamond substrate preparation by laser cutting, grinding, polishing, and cleaning, compares typical lithography techniques and their suitability for diamond processing, and summarizes experimentally reported diamond patterning approaches, including high-temperature vapor-based etching, catalyst-assisted etching, reactive ion etching, and direct patterning by focused ion beam. A selection of micro- and nanostructures realized in single crystal diamond is presented. This chapter is intended to serve as a practical guide for the selection of diamond micro- and nanostructuring methods suitable for emerging quantum photonic applications.

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Type
book part or chapter
DOI
10.1016/B978-0-443-13717-4.00003-7
Scopus ID

2-s2.0-105011218806

Author(s)
Quack, Niels

Faculty of Engineering

Galland, Christophe  

École Polytechnique Fédérale de Lausanne

Losero, Elena

Istituto Nazionale di Ricerca Metrologica

Editors
Agio, Mario
•
Castelletto, Stefania
Date Issued

2025-01-01

Publisher

Elsevier

Published in
Nanophotonics with Diamond and Silicon Carbide for Quantum Technologies
ISBN of the book

9780443137174

9780443137181

Start page

27

End page

45

Series title/Series vol.

Nanophotonics Series

Subjects

engineering

•

manufacturing

•

materials science engineering

•

microfabrication

•

Microstructure

•

nanofabrication

•

photonics

•

precision engineering

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASPE  
Available on Infoscience
July 29, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/252774
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