2017
DOI: 10.1126/sciadv.1701476
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Experimental phase diagram of zero-bias conductance peaks in superconductor/semiconductor nanowire devices

Abstract: Map to Majorana fermions in nanowires is revealed.

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Cited by 199 publications
(151 citation statements)
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“…Another remarkable feature is that this signature is independent of boundary effects and thus unrelated to the presence of MFs. To demonstrate these findings, we perform analytical and numerical calculations for both closed and open systems and for various parameter regimes which are relevant for InAs or InSb nanowires used in recent experiments [24][25][26][27][28][29][30][31]. We also demonstrate that these effects are robust against static random disorder.…”
mentioning
confidence: 77%
See 1 more Smart Citation
“…Another remarkable feature is that this signature is independent of boundary effects and thus unrelated to the presence of MFs. To demonstrate these findings, we perform analytical and numerical calculations for both closed and open systems and for various parameter regimes which are relevant for InAs or InSb nanowires used in recent experiments [24][25][26][27][28][29][30][31]. We also demonstrate that these effects are robust against static random disorder.…”
mentioning
confidence: 77%
“…Various candidate materials can host such topological states [5][6][7][8][9][10][11][12][13][14][15][16][17][18][19][20][21] but one of the most promising platforms are semiconducting nanowires of InAs or InSb material, with strong Rashba spin orbit interaction (SOI), subjected to an external magnetic field and in proximity to an s-wave superconductor [22,23]. Experimental evidence has been reported for topological phases in such wires [24][25][26][27][28][29][30][31] as well as in magnetic atomic chains on superconducting substrates [32][33][34]. However, most of the work so far has focused on the detection of the MFs in these nanowires and not on their bulk properties.…”
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confidence: 99%
“…A.3 shows the pair amplitude F (y, z) for the effective model [Eq. (25)] of a planar Josephson junction with a 2D Rashba SOC. As shown in the figure, in the presence of an in-plane magnetic field, the pair amplitude F (r) oscillates inside the junction channel with an oscillation length which decreases with increasing SOC strength.…”
Section: Discussionmentioning
confidence: 99%
“…and the first dot. Once we know all of the probabilities P i , we can calculate the current using, (24) and the differential conductance is simply dI/dV which we calculate numerically.…”
Section: Measuring the Weyl Pointmentioning
confidence: 99%