English

Physically transient photonics: random vs. distributed feedback lasing based on nanoimprinted DNA

Materials Science 2014-11-10 v2 Optics

Abstract

The authors report on a room-temperature nanoimprinted, DNA-based distributed feedback (DFB) laser operating at 605 nm. The laser is made of a pure DNA host matrix doped with gain dyes. At high excitation densities, the emission of the untextured dye-doped DNA films is characterized by a broad emission peak with an overall linewidth of 12 nm and superimposed narrow peaks, characteristic of random lasing. Moreover, direct patterning of the DNA films is demonstrated with a resolution down to 100 nm, enabling the realization of both surface-emitting and edge-emitting DFB lasers with a typical linewidth<0.3 nm. The resulting emission is polarized, with a ratio between the TE- and TM-polarized intensities exceeding 30. In addition, the nanopatterned devices dissolve in water within less than two minutes. These results demonstrate the possibility of realizing various physically transient nanophotonics and laser architectures, including random lasing and nanoimprinted devices, based on natural biopolymers.

Keywords

Cite

@article{arxiv.1410.2004,
  title  = {Physically transient photonics: random vs. distributed feedback lasing based on nanoimprinted DNA},
  author = {Andrea Camposeo and Pompilio Del Carro and Luana Persano and Konrad Cyprych and Adam Szukalski and Lech Sznitko and Jaroslaw Mysliwiec and Dario Pisignano},
  journal= {arXiv preprint arXiv:1410.2004},
  year   = {2014}
}

Comments

20 pages, 5 figures, 31 references

R2 v1 2026-06-22T06:16:06.209Z