Conal E. Murray, Deepika Priyadarshini, et al.
Applied Physics Letters
Superconducting qubits are sensitive to a variety of loss mechanisms including dielectric loss from interfaces. By changing the physical footprint of the qubit, it is possible to modulate sensitivity to surface loss. Here, we show a systematic study of planar superconducting transmons of differing physical footprints to optimize the qubit design for maximum coherence. We find that qubits with small footprints are limited by surface loss and that qubits with large footprints are limited by other loss mechanisms, which are currently not understood.
Conal E. Murray, Deepika Priyadarshini, et al.
Applied Physics Letters
Paul D. Nation, Hwajung Kang, et al.
PRX Quantum
Sean M. Polvino, Conal E. Murray, et al.
Applied Physics Letters
Kazuya Ohuchi, Christian Lavoie, et al.
IWJT 2008