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Optimal conditions for observing fractional Josephson effect in topological Josephson junctions

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Abstract
Topological Josephson junctions (JJs), which contain Majorana bound states, are expected to exhibit 4 pi-periodic current-phase relation, thereby resulting in doubled Shapiro steps under microwave irradiation. We performed numerical calculations of dynamical properties of topological JJs using a modified resistively and capacitively shunted junction model and extensively investigated the progressive evolution of Shapiro steps as a function of the junction parameters and microwave power and frequency. Our calculation results indicate that the suppression of odd-integer Shapiro steps, i.e., evidence of the fractional ac Josephson effect, is enhanced significantly by the increase in the junction capacitance and IcRn product as well as the decrease in the microwave frequency even for the same portion of the 4 pi-periodic supercurrent. Our study provides the optimal conditions for observing the fractional ac Josephson effect; furthermore, our new model can be used to precisely quantify the topological supercurrent from the experimental data of topological JJs.
Author(s)
Yeongmin JangDoh, Yong-Joo
Issued Date
2021-01
Type
Article
DOI
10.1007/s40042-020-00035-5
URI
https://scholar.gist.ac.kr/handle/local/11764
Publisher
한국물리학회
Citation
Journal of the Korean Physical Society, v.78, no.1, pp.58 - 63
ISSN
0374-4884
Appears in Collections:
Department of Physics and Photon Science > 1. Journal Articles
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