Thermalization of a flexible microwave stripline measured by a superconducting qubit

P Patrick Paluch (IQMT, Karlsruhe Institute of Technology 1 , 76131 Karlsruhe,) M Martin Spiecker N Nicolas Gosling V Viktor Adam (IQMT, Karlsruhe Institute of Technology 1 , 76131 Karlsruhe,) J Jakob Kammhuber (Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,) K Kiefer Vermeulen (Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,) D Daniël Bouman (Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,) W Wolfgang Wernsdorfer I Ioan M. Pop

Abstract

With the demand for scalable cryogenic microwave circuitry continuously rising, recently developed flexible microwave striplines offer the tantalizing perspective of increasing the cabling density by an order of magnitude without thermally overloading the cryostat. We use a superconducting quantum circuit to test the thermalization of input flex cables with integrated 60 dB of attenuation distributed at various temperature stages. From the measured decoherence rate of a superconducting fluxonium qubit, we estimate a residual population of the readout resonator of (2.2±0.9)×10−3 photons and we measure a 0.28 ms thermalization time for the flexible stripline attenuators. Furthermore, we confirm that the qubit reaches an effective temperature of 26.4 mK, close to the base temperature of the cryostat, practically the same as when using a conventional semi-rigid coaxial cable setup.

Article Details

Volume / Issue Vol. 126, Issue 3
Published January 20, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (9)

P

Patrick Paluch

IQMT, Karlsruhe Institute of Technology 1 , 76131 Karlsruhe,

M

Martin Spiecker

N

Nicolas Gosling

V

Viktor Adam

IQMT, Karlsruhe Institute of Technology 1 , 76131 Karlsruhe,

J

Jakob Kammhuber

Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,

K

Kiefer Vermeulen

Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,

D

Daniël Bouman

Delft Circuits B.V. 3 , Lorentzweg 1, 2628CJ Delft,

W

Wolfgang Wernsdorfer

I

Ioan M. Pop