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  4. PowderMEMS® magnets as enabler for miniaturized NV based quantum sensors and quantum processor architectures
 
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2025
Journal Article
Title

PowderMEMS® magnets as enabler for miniaturized NV based quantum sensors and quantum processor architectures

Abstract
The implementation of PowderMEMS® micromagnets of varying shapes, with lateral dimensions of 700 μm and 800 μm, into 2.3 × 2.3 × 0.525 mm<sup>3</sup> silicon chips has been demonstrated successfully. These chips have been utilized as functionalized interposer for micro-scaled quantum devices. PowderMEMS® micromagnets offer a high biasing magnetic field flux density ranging from 30 mT to 35 mT over a distance of 100 μm depending on the size and shape of the micromagnets. This magnetic field strength (B<inf>Z</inf>) was proven by room temperature ODMR measurements with NV centers in diamond: B<inf>Z</inf> was measured over a range of distances, extending to 6 mm from the center of the micromagnets. The evaluation involved the analysis of Zeeman splitting. Furthermore, a Hall measurement setup was employed to map the lateral distribution of the magnetic field strength.
Author(s)
Bähr, Mario
CiS Forschungsinstitut für Mikrosensorik GmbH
Gojdka, Björn
Fraunhofer-Institut für Siliziumtechnologie ISIT  
Lisec, Thomas  
Fraunhofer-Institut für Siliziumtechnologie ISIT  
Clausen, Niels
Fraunhofer-Institut für Siliziumtechnologie ISIT  
Bodduluri, Mani Teja
Fraunhofer-Institut für Siliziumtechnologie ISIT  
Zino, Aya
CiS Forschungsinstitut für Mikrosensorik GmbH
Käpplinger, Indira
CiS Forschungsinstitut für Mikrosensorik GmbH
Karolewski, Dominik
CiS Forschungsinstitut für Mikrosensorik GmbH
Meijer, Jan B.
Universität Leipzig
Ortlepp, Thomas
CiS Forschungsinstitut für Mikrosensorik GmbH
Journal
Micro and Nano Engineering
Funder
Bundesministerium für Bildung und Forschung  
Open Access
DOI
10.1016/j.mne.2025.100316
Additional link
Full text
Language
English
Fraunhofer-Institut für Siliziumtechnologie ISIT  
Keyword(s)
  • MEMS micromagnets

  • PowderMEMS®

  • Quantum processor

  • Quantum sensor

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