English

Fluorescence Lifetime Hong-Ou-Mandel Sensing

Quantum Physics 2023-12-07 v1 Optics

Abstract

Fluorescence Lifetime Imaging Microscopy in the time domain is typically performed by recording the arrival time of photons either by using electronic time tagging or a gated detector. As such the temporal resolution is limited by the performance of the electronics to 100's of picoseconds. Here, we demonstrate a fluorescence lifetime measurement technique based on photon-bunching statistics with a resolution that is only dependent on the duration of the reference photon or laser pulse, which can readily reach the 1-0.1 picosecond timescale. A range of fluorescent dyes having lifetimes spanning from 1.6 to 7 picoseconds have been here measured with only ~1 second measurement duration. We corroborate the effectiveness of the technique by measuring the Newtonian viscosity of glycerol/water mixtures by means of a molecular rotor having over an order of magnitude variability in lifetime, thus introducing a new method for contact-free nanorheology. Accessing fluorescence lifetime information at such high temporal resolution opens a doorway for a wide range of fluorescent markers to be adopted for studying yet unexplored fast biological processes, as well as fundamental interactions such as lifetime shortening in resonant plasmonic devices.

Keywords

Cite

@article{arxiv.2312.03575,
  title  = {Fluorescence Lifetime Hong-Ou-Mandel Sensing},
  author = {Ashley Lyons and Vytautas Zickus and Raúl Álvarez-Mendoza and Danilo Triggiani and Vincenzo Tamma and Niclas Westerberg and Manlio Tassieri and Daniele Faccio},
  journal= {arXiv preprint arXiv:2312.03575},
  year   = {2023}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-28T13:42:56.479Z