Mesoscopic photonic structures in glasses by femtosecond-laser fashioned confinement of semiconductor quantum dots

Publication date

2013

Authors

Mardilovich, P.
Yang, L.
Huang, Huan
Krol, DeniseISNI 0000000390784621
Risbud, S.H.

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Article
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Abstract

Optically tunable mesoscale structures offer unparalleled potential for photonic device applications. Here, we report the creation of composite photonic structures consisting of CdS xSe1−x quantum dots (QDs) customized within lines, first written in a glass by femtosecond laser pulses. CdS xSe1−x-doped borosilicate glasses were pulsed with a fs-laser using a 473 kHz repetition rate to create chemically distinct microscopic regions. Upon further heat treatment, these regions served as “micro-crucibles” within which quantum dots were precipitated exclusively. These results open prospects of developing other semiconductor doped glasses for versatile photonic structures useful over broader optical wavelengths.

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Citation

Mardilovich, P, Yang, L, Huang, H, Krol, D M & Risbud, S H 2013, 'Mesoscopic photonic structures in glasses by femtosecond-laser fashioned confinement of semiconductor quantum dots', Applied Physics Letters, vol. 102, 151112, pp. 1-6. https://doi.org/10.1063/1.4802724