Quantum (May 2024)

Precisely determining photon-number in real time

  • Leonardo Assis Morais,
  • Till Weinhold,
  • Marcelo Pereira de Almeida,
  • Joshua Combes,
  • Markus Rambach,
  • Adriana Lita,
  • Thomas Gerrits,
  • Sae Woo Nam,
  • Andrew G. White,
  • Geoff Gillett

DOI
https://doi.org/10.22331/q-2024-05-23-1355
Journal volume & issue
Vol. 8
p. 1355

Abstract

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Superconducting transition-edge sensors (TES) are extremely sensitive microcalorimeters used as photon detectors with unparalleled energy resolution. They have found application from measuring astronomical spectra through to determining the quantum property of photon-number, $\hat{n} {=} \hat{a}^† \hat{a}$, for energies from 0.6-2.33eV. However, achieving optimal energy resolution requires considerable data acquisition – on the order of 1GB/min – followed by post-processing, which does not allow access to energy information in real time. Here we use a custom hardware processor to process TES pulses while new detections are still being registered, allowing photon-number to be measured in real time as well as reducing data requirements by orders-of-magnitude. We resolve photon number up to $n=16$ – achieving up to parts-per-billion discrimination for low photon numbers on the fly – providing transformational capacity for applications of TES detectors from astronomy through to quantum technology.