English

Graphene-Insulator-Superconductor junctions as thermoelectric bolometers

Mesoscale and Nanoscale Physics 2026-01-28 v2 Superconductivity Quantum Physics

Abstract

We design a superconducting thermoelectric bolometer made of a Graphene-Insulator-Superconductor tunnel junction. Our detector has the advantage of being passive, as it directly transduces input power to a voltage without the need to modulate an external bias. We characterize the device via numerical simulation of the full nonlinear thermal dynamical model of the junction, considering heating of both sides of the junction. While estimating noise contributions, we found novel expressions due to the temperatures of both sides being different than the bath temperature. Numerical simulations show a Noise Equivalent Power NEP4×1017W/Hz{\rm NEP}\sim 4\times 10^{-17}\,{\rm W}/\sqrt{\rm Hz} for an input power of 1016W\sim10^{-16}\,{\rm W}, a response time of τth200ns\tau_{th}\sim 200\, {\rm ns} and an integration time to obtain a Signal-to-Noise Ratio SNR=1{\rm SNR}=1 of τSNR=1100μs\tau_{\rm SNR=1}\sim 100\,\mu{\rm s} for an input power 1013W\sim 10^{-13}\,{\rm W}. Therefore, the device shows promise for large-array cosmological experiment applications, also considering its advantages for fabrication and heat budget.

Keywords

Cite

@article{arxiv.2512.14493,
  title  = {Graphene-Insulator-Superconductor junctions as thermoelectric bolometers},
  author = {Leonardo Lucchesi and Federico Paolucci},
  journal= {arXiv preprint arXiv:2512.14493},
  year   = {2026}
}

Comments

10 pages, 4 figures