Exceptional points in tunable superconducting resonators
Year of publication
2019
Authors
Partanen, Matti; Goetz, Jan; Tan, Kuan Yen; Kohvakka, Kassius; Sevriuk, Vasilii; Lake, Russell E.; Kokkoniemi, Roope; Ikonen, Joni; Hazra, Dibyendu; Makinen, Akseli; Hyyppa, Eric; Gronberg, Leif; Vesterinen, Visa; Silveri, Matti; Mottonen, Mikko
Abstract
Superconducting quantum circuits are potential candidates to realize a large-scale quantum computer. The envisioned large density of integrated components, however, requires a proper thermal management and control of dissipation. To this end, it is advantageous to utilize tunable dissipation channels and to exploit the optimized heat flow at exceptional points (EPs). Here, we experimentally realize an EP in a superconducting microwave circuit consisting of two resonators. The EP is a singularity point of the effective Hamiltonian, and corresponds to critical damping with the most efficient heat transfer between the resonators without back and forth oscillation of energy. We observe a crossover from underdamped to overdamped coupling across the EP by utilizing photon-assisted tunneling as an in situ tunable dissipative element in one of the resonators. These methods can be used to obtain fast dissipation, for example, for initializing qubits to their ground states. In addition, these results pave the way for thorough investigation of parity-time symmetry and the spontaneous symmetry breaking at the EP in superconducting quantum circuits operating at the level of single energy quanta.
Show moreOrganizations and authors
Aalto University
Makinen Akseli
Hazra Dibyendu
Ikonen Joni
Kohvakka Kassius
Silveri Matti
Lake Russell
Vesterinen Visa
Publication type
Publication format
Article
Parent publication type
Journal
Article type
Original article
Audience
ScientificPeer-reviewed
Peer-ReviewedMINEDU's publication type classification code
A1 Journal article (refereed), original researchPublication channel information
Journal/Series
Volume
100
Issue
13
Article number
134505
ISSN
Publication forum
Publication forum level
2
Open access
Open access in the publisher’s service
Yes
Open access of publication channel
Partially open publication channel
Self-archived
Yes
Article processing fee (EUR)
5125
Other information
Fields of science
Physical sciences; Electronic, automation and communications engineering, electronics; Materials engineering
Keywords
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Internationality of the publisher
International
Language
English
International co-publication
Yes
Co-publication with a company
No
DOI
10.1103/PhysRevB.100.134505
The publication is included in the Ministry of Education and Culture’s Publication data collection
Yes