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Polarized three-photon-pumped laser in a single MOF microcrystal.


ABSTRACT: Higher order multiphoton-pumped polarized lasers have fundamental technological importance. Although they can be used to in vivo imaging, their application has yet to be realized. Here we show the first polarized three-photon-pumped (3PP) microcavity laser in a single host-guest composite metal-organic framework (MOF) crystal, via a controllable in situ self-assembly strategy. The highly oriented assembly of dye molecules within the MOF provides an opportunity to achieve 3PP lasing with a low lasing threshold and a very high-quality factor on excitation. Furthermore, the 3PP lasing generated from composite MOF is perfectly polarized. These findings may eventually open up a new route to the exploitation of multiphoton-pumped solid-state laser in single MOF microcrystal (or nanocrystal) for future optoelectronic and biomedical applications.

SUBMITTER: He H 

PROVIDER: S-EPMC4800435 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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Polarized three-photon-pumped laser in a single MOF microcrystal.

He Huajun H   Ma En E   Cui Yuanjing Y   Yu Jiancan J   Yang Yu Y   Song Tao T   Wu Chuan-De CD   Chen Xueyuan X   Chen Banglin B   Qian Guodong G  

Nature communications 20160317


Higher order multiphoton-pumped polarized lasers have fundamental technological importance. Although they can be used to in vivo imaging, their application has yet to be realized. Here we show the first polarized three-photon-pumped (3PP) microcavity laser in a single host-guest composite metal-organic framework (MOF) crystal, via a controllable in situ self-assembly strategy. The highly oriented assembly of dye molecules within the MOF provides an opportunity to achieve 3PP lasing with a low la  ...[more]

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