Robust signatures detection of Majorana fermions in superconducting iron chains

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Abstract

We theoretically propose an optical means to detect Majorana fermions in superconducting iron (Fe) chains with a hybrid quantum dot-nanomechanical resonator system driven by two-tone fields, which is very different from the current tunneling spectroscopy experiments with electrical means. Based on the scheme, the phenomenon of Majorana modes induced transparency is demonstrated and a straightforward method to determine the quantum dot-Majorana fermions coupling strength is also presented. We further investigate the role of the nanomechanical resonator, and the resonator behaving as a phonon cavity enhances the exciton resonance spectrum, which is robust for detecting of Majorana fermions. The coherent optical spectrum affords a potential supplement to detecte Majorana fermions and supports Majorana fermions-based topological quantum computation in superconducting iron chains.

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Chen, H. J., Fang, X. W., Chen, C. Z., Li, Y., & Tang, X. D. (2016). Robust signatures detection of Majorana fermions in superconducting iron chains. Scientific Reports, 6. https://doi.org/10.1038/srep36600

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