Kinetic inductors remove the inductor-loss bottleneck that blocked commercial-scale reversible logic, making cryo-CMOS qubit controllers a near-term conversion target.
Cryogenic resonator design for trapped ion experiments in Paul traps
1 Pith paper cite this work, alongside 12 external citations. Polarity classification is still indexing.
abstract
Trapping ions in Paul traps requires high radio-frequency voltages, which are generated using resonators. When operating traps in a cryogenic environment, an in-vacuum resonator showing low loss is crucial to limit the thermal load to the cryostat. In this study, we present a guide for the design and production of compact, shielded cryogenic resonators. We produced and characterized three different types of resonators and furthermore demonstrate efficient impedance matching of these resonators at cryogenic temperatures.
fields
cs.ET 1years
2026 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Kinetic Inductors Enable Reversible Logic
Kinetic inductors remove the inductor-loss bottleneck that blocked commercial-scale reversible logic, making cryo-CMOS qubit controllers a near-term conversion target.