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  4. Design of a microwave frontend for a trapped ion quantum computer
 
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Design of a microwave frontend for a trapped ion quantum computer

Publikationstyp
Conference Paper
Date Issued
2025-03
Sprache
English
Author(s)
Jaeger, Marvin  
Hochfrequenztechnik E-3  
Riemschneider, Georg Frederik 
Hochfrequenztechnik E-3  
Weiß, Nico  
Hochfrequenztechnik E-3  
Tegowski, Bartosz  
Hochfrequenztechnik E-3  
Kölpin, Alexander  orcid-logo
Hochfrequenztechnik E-3  
TORE-URI
https://hdl.handle.net/11420/55842
Start Page
152
End Page
155
Citation
16th German Microwave Conference Gemic 2025
Contribution to Conference
16th German Microwave Conference, GeMiC 2025  
Publisher DOI
10.23919/GeMiC64734.2025.10979039
Scopus ID
2-s2.0-105007158487
Publisher
IEEE
ISBN
978-3-9820-3974-9
Unlike classical computers, which represent information as binary '1' and '0', quantum computers use qubits that exist in a superposition of both, enabling parallel computation. This capability allows them to solve special kinds of problems faster than classical computers. To process information, qubits are manipulated by applying energy, such as via a microwave signal, which is provided by a microwave frontend that ensures an appropriate frequency spectrum and power level. This paper defines the key parameters and implements such a frontend for trapped ion quantum computers which follow the magnetic gradient induced coupling (MAGIC) principle. The frontend is manufactured on a printed circuit board and measurements prove its functionality. It achieves an idle gate fidelity of 99.9% (99.99%) at an output power of 6.32 dBm (2.4 dBm).
Subjects
Fidelity | magnetic gradient induced coupling (MAGIC) | microwave frontend | quantum computing | trapped ion
DDC Class
600: Technology
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