Coherent phase slips in coupled matter-wave circuits
@inproceedings{PerezObiol2021CoherentPS, title={Coherent phase slips in coupled matter-wave circuits}, author={Axel P'erez-Obiol and Juan Polo and L. Amico}, year={2021} }
A. Pérez-Obiol, ∗ J. Polo, ∗ and L. Amico 3, 4, 5, † Barcelona Supercomputing Center, 08034 Barcelona, Spain‡ Quantum Research Centre, Technology Innovation Institute, Abu Dhabi, UAE§ INFN-Sezione di Catania, Via S. Sofia 64, 95127 Catania, Italy Centre for Quantum Technologies, National University of Singapore, 3 Science Drive 2, Singapore 117543, Singapore LANEF ‘Chaire d’excellence’, Université Grenoble-Alpes & CNRS, F-38000 Grenoble, France (Dated: December 16, 2021)
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References
SHOWING 1-10 OF 54 REFERENCES
SoC
- PsychologyJournal of Japan Society for Fuzzy Theory and Intelligent Informatics
- 2021
KEY: # = new course * = course changed † = course dropped University of Kentucky 2014-2015 Undergraduate Bulletin 1 SOC 10
Quantum Science and Technology 7
- 015015
- 2021
and W
- von Klitzing, arXiv preprint arXiv:2107.08561
- 2021
Journal of Physics B: Atomic
- Molecular and Optical Physics 53, 115301
- 2020
Phys
- Rev. E 101, 022212
- 2020
Phys
- Rev. A 102, 063302
- 2020
Phys
- Rev. Lett. 123, 195301
- 2019
Phys
- Rev. B 100, 205109
- 2019
Phys
- Rev. A 100, 013621
- 2019
Phys
- Rev. Lett. 121, 090404
- 2018