DOAJ Open Access 2025

Laser-cut patterned, micrometer-thin diamond membranes with coherent color centers for open microcavities

Yanik Herrmann Julia M Brevoord Julius Fischer Stijn Scheijen Colin Sauerzapf +8 lainnya

Abstrak

Micrometer-scale thin diamond devices are key components for various quantum sensing and networking experiments, including the integration of color centers into optical microcavities. In this work, we introduce a laser-cutting method for patterning microdevices from millimeter-sized diamond membranes. The method can be used to fabricate devices with micrometer thicknesses and edge lengths of typically 10–100  µ m. We compare this method with an established nanofabrication process based on electron-beam lithography, a two-step transfer pattern utilizing a silicon nitride hard mask material, and reactive ion etching. Microdevices fabricated using both methods are bonded to a cavity Bragg mirror and characterized using scanning cavity microscopy. We record two-dimensional cavity finesse maps over the devices, revealing insights about the variation in diamond thickness, surface quality, and strain. The scans demonstrate that devices fabricated by laser-cutting exhibit similar properties to devices obtained by the conventional method. Finally, we show that the devices host optically coherent Tin- and Nitrogen-Vacancy centers suitable for applications in quantum networking.

Penulis (13)

Y

Yanik Herrmann

J

Julia M Brevoord

J

Julius Fischer

S

Stijn Scheijen

C

Colin Sauerzapf

N

Nina Codreanu

L

Leonardo G C Wienhoven

Y

Yuran M Q van der Graaf

C

Cornelis F J Wolfs

R

Régis Méjard

M

Maximilian Ruf

N

Nick de Jong

R

Ronald Hanson

Format Sitasi

Herrmann, Y., Brevoord, J.M., Fischer, J., Scheijen, S., Sauerzapf, C., Codreanu, N. et al. (2025). Laser-cut patterned, micrometer-thin diamond membranes with coherent color centers for open microcavities. https://doi.org/10.1088/2633-4356/adfa5a

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1088/2633-4356/adfa5a
Akses
Open Access ✓