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Dmitry Baranov. Portrait.

Dmitry Baranov

Associate senior lecturer

Dmitry Baranov. Portrait.

Cryo-optical setup for wide-field microscopy and spectroscopy of luminescent nanomaterials

Author

  • Lorenzo Tallarini
  • Gioele Lapo
  • Marzo C. López Cerón
  • Ivan G. Scheblykin
  • Dmitry Baranov

Summary, in English

Studying photoluminescence (PL) is essential for understanding and engineering light-emitting nanomaterials. Heterogeneous samples, such as thin films and microstructures, require characterization of the spatial distribution of PL intensity, spectra, lifetimes, and photon correlations at the microscale under variable temperatures. Here we describe a cryo-optical setup for micro-PL imaging, spectroscopy, lifetime, and photon bunching measurements that addresses this need. The system combines a home-built wide-field microscope with a commercial closed-loop helium cryostat, a spectrograph equipped with an sCMOS camera, and a Hanbury-Brown and Twiss interferometer (HBT-interferometer). Optical layout and components of the setup are described, and its performance is tested on samples of CsPbBr3 nanocrystal superlattices. This work aims to demonstrate that it is feasible to develop an advanced microscopy and spectroscopy setup suitable for material scientists focused on developing novel materials, even if they initially lack extensive experience in advanced optical methods.

Department/s

  • Lund Laser Centre, LLC
  • LU Profile Area: Light and Materials
  • NanoLund: Centre for Nanoscience
  • Chemical Physics
  • LTH Profile Area: Nanoscience and Semiconductor Technology
  • LTH Profile Area: Photon Science and Technology

Publishing year

2026

Language

English

Pages

1474-1482

Publication/Series

Nanoscale

Volume

18

Issue

3

Full text

Document type

Article

Publisher

Royal Society of Chemistry

Topic

  • Condensed Matter Physics (including Material Physics, Nano Physics)
  • Materials Chemistry
  • Physical Chemistry (including Surface- and Colloid Chemistry)

Keywords

  • SDG 7 - Affordable and Clean Energy

Status

Published

Project

  • Engineering of Superfluorescent Nanocrystal Solids

ISBN/ISSN/Other

  • ISSN: 2040-3372