Overcoming experimental obstacles in two-dimensional spectroscopy of a single molecule

S Sanchayeeta Jana (Experimental Physics III, University of Bayreuth , 95447 Bayreuth,) S Simon Durst (Experimental Physics III, University of Bayreuth , 95447 Bayreuth,) L Lucas Ludwig (Experimental Physics III, University of Bayreuth , 95447 Bayreuth,) M Markus Lippitz (Experimental Physics III, University of Bayreuth , 95447 Bayreuth,)

Abstract

Two-dimensional electronic spectroscopy provides information on coupling and energy transfer between excited states on ultrafast timescales. Only recently, incoherent fluorescence detection has made it possible to combine this method with single-molecule optical spectroscopy to reach the ultimate limit of sensitivity. The main obstacle has been the low number of photons detected due to limited photostability. Here, we discuss the key experimental choices that allowed us to overcome these obstacles: broadband acousto-optic modulation, accurate phase-locked loops, photon-counting lock-in detection, delay stage linearization, and detector dead-time compensation. We demonstrate how the acquired photon stream data can be used to post-select detection events according to specific criteria.

Article Details

Volume / Issue Vol. 162, Issue 18
Published May 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (4)

S

Sanchayeeta Jana

Experimental Physics III, University of Bayreuth , 95447 Bayreuth,

S

Simon Durst

Experimental Physics III, University of Bayreuth , 95447 Bayreuth,

L

Lucas Ludwig

Experimental Physics III, University of Bayreuth , 95447 Bayreuth,

M

Markus Lippitz

Experimental Physics III, University of Bayreuth , 95447 Bayreuth,