Related Experiment Video
Updated: Jun 2, 2026

Single-molecule Manipulation of G-quadruplexes by Magnetic Tweezers
Published on: September 19, 2017
Concentric transmon qubit featuring fast tunability and an anisotropic magnetic dipole moment
Jochen Braumüller1, Martin Sandberg2, Michael R Vissers2
1Physikalisches Institut, Karlsruhe Institute of Technology, 76131 Karlsruhe, Germany.
None:
We present a planar qubit design based on a superconducting circuit that we call concentric transmon. While employing a straightforward fabrication process using Al evaporation and lift-off lithography, we observe qubit lifetimes and coherence times in the order of 10 µs. We systematically characterize loss channels such as incoherent dielectric loss, Purcell decay and radiative losses. The implementation of a gradiometric SQUID loop allows for a fast tuning of the qubit transition frequency and therefore for full tomographic control of the quantum circuit. Due to the large loop size, the presented qubit architecture features a strongly increased magnetic dipole moment as compared to conventional transmon designs. This renders the concentric transmon a promising candidate to establish a site-selective passive direct coupling between neighboring qubits, being a pending quest in the field of quantum simulation.
Related Concept Videos
Mass Analyzers: Common Types
Diamagnetism
Diamagnetism was discovered by Anton Brugmans in 1778 when he observed that bismuth gets repelled by magnetic fields, thus theorizing that diamagnets get repelled by magnets.
NMR Spectroscopy: Spin–Spin Coupling
Paramagnetism
Ferromagnetism
Atomic Nuclei: Nuclear Relaxation Processes

