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Strong and Localized Luminescence from Interface Bubbles Between Stacked hBN Multilayers

Engineering and Technology

Strong and Localized Luminescence from Interface Bubbles Between Stacked hBN Multilayers

H. Y. Lee, S. Sarkar, et al.

This research showcases remarkable ultraviolet luminescence from interface bubbles in hexagonal boron nitride multilayers, revealing unique mechanical behavior and opportunities for strain engineering in van der Waals materials, conducted by Hae Yeon Lee, Soumya Sarkar, Kate Reidy, Abinash Kumar, Julian Klein, Kenji Watanabe, Takashi Taniguchi, James M. LeBeau, Frances M. Ross, and Silvija Gradečak.... show more
Abstract
Extraordinary optoelectronic properties of van der Waals (vdW) heterostructures can be tuned via strain caused by mechanical deformation. Here, we demonstrate strong and localized luminescence in the ultraviolet region from interface bubbles between stacked multilayers of hexagonal boron nitride (hBN). Compared to bubbles in stacked monolayers, bubbles formed by stacking vdW multilayers show distinct mechanical behavior. We use this behavior to elucidate radius- and thickness-dependent bubble geometry and the resulting strain across the bubble, from which we establish the thickness-dependent bending rigidity of hBN multilayers. We then utilize the polymeric material confined within the bubbles to modify the bubble geometry under electron beam irradiation, resulting in strong luminescence and formation of optical standing waves. Our results open a route to design and modulate microscopic-scale optical cavities via strain engineering in vdW materials, which we suggest will be relevant to both fundamental mechanical studies and optoelectronic applications.
Publisher
Nature Communications
Published On
Aug 25, 2022
Authors
Hae Yeon Lee, Soumya Sarkar, Kate Reidy, Abinash Kumar, Julian Klein, Kenji Watanabe, Takashi Taniguchi, James M. LeBeau, Frances M. Ross, Silvija Gradečak
Tags
ultraviolet luminescence
hexagonal boron nitride
multilayers
bubble geometry
strain engineering
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