Magnetic field decouples nodeless surface and nodal bulk orders in PdTe

Fuente: arXiv
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Main Authors: Mishra, Atanu, Mohmad, Ghulam, Bansal, Kiran, Monish, Mohd, Kumar, Pankaj, Yadav, Chandrasekhar, Sheet, Goutam
Format: Preprint
Published: 2026
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author Mishra, Atanu
Mohmad, Ghulam
Bansal, Kiran
Monish, Mohd
Kumar, Pankaj
Yadav, Chandrasekhar
Sheet, Goutam
author_facet Mishra, Atanu
Mohmad, Ghulam
Bansal, Kiran
Monish, Mohd
Kumar, Pankaj
Yadav, Chandrasekhar
Sheet, Goutam
contents Selective spectroscopic disentanglement of surface and bulk quantum orders remains an outstanding challenge in condensed matter physics. The candidate topological superconductor PdTe has recently been proposed to host a nodeless surface gap on top of a nodal bulk state, but their direct identification and mutual coupling remained experimentally elusive. Here, we employ magnetic-field-dependent Andreev reflection spectroscopy to spectroscopically disentangle these components. At zero magnetic field, the spectra exhibit a BCS-like gap structure, consistent with dominant transport through a fully gapped surface superconducting state. Strikingly, even a weak magnetic field leads to an abrupt suppression of the Andreev-enhanced conductance (AEC), while a residual AEC, attributable to the nodal bulk state, persists to much higher magnetic fields. The transition is accompanied by pronounced magnetic hysteresis pointing to the existence of vortex dynamics at low fields. Our findings suggest that the nodal bulk gap facilitates early vortex entry, which in turn disrupts the fragile surface superconductivity. These results establish a field-tunable decoupling of surface and bulk superconductivity and illustrate how distinct gap topologies can shape the global superconducting order in multichannel systems.
format Preprint
id arxiv_https___arxiv_org_abs_2601_07493
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Magnetic field decouples nodeless surface and nodal bulk orders in PdTe
Mishra, Atanu
Mohmad, Ghulam
Bansal, Kiran
Monish, Mohd
Kumar, Pankaj
Yadav, Chandrasekhar
Sheet, Goutam
Superconductivity
Selective spectroscopic disentanglement of surface and bulk quantum orders remains an outstanding challenge in condensed matter physics. The candidate topological superconductor PdTe has recently been proposed to host a nodeless surface gap on top of a nodal bulk state, but their direct identification and mutual coupling remained experimentally elusive. Here, we employ magnetic-field-dependent Andreev reflection spectroscopy to spectroscopically disentangle these components. At zero magnetic field, the spectra exhibit a BCS-like gap structure, consistent with dominant transport through a fully gapped surface superconducting state. Strikingly, even a weak magnetic field leads to an abrupt suppression of the Andreev-enhanced conductance (AEC), while a residual AEC, attributable to the nodal bulk state, persists to much higher magnetic fields. The transition is accompanied by pronounced magnetic hysteresis pointing to the existence of vortex dynamics at low fields. Our findings suggest that the nodal bulk gap facilitates early vortex entry, which in turn disrupts the fragile surface superconductivity. These results establish a field-tunable decoupling of surface and bulk superconductivity and illustrate how distinct gap topologies can shape the global superconducting order in multichannel systems.
title Magnetic field decouples nodeless surface and nodal bulk orders in PdTe
topic Superconductivity
url https://arxiv.org/abs/2601.07493