![a) Illustration showing an atomic force microscope (AFM) tip indenting the transition-metal dichalcogenide/polymer structure to introduce local strain. (b) Patterned single photon emission in tungsten diselenide (WSe2) induced by AFM indentation of a) Illustration showing an atomic force microscope (AFM) tip indenting the transition-metal dichalcogenide/polymer structure to introduce local strain. (b) Patterned single photon emission in tungsten diselenide (WSe2) induced by AFM indentation of](https://l450v.alamy.com/450v/rtcn9y/a-illustration-showing-an-atomic-force-microscope-afm-tip-indenting-the-transition-metal-dichalcogenidepolymer-structure-to-introduce-local-strain-b-patterned-single-photon-emission-in-tungsten-diselenide-wse2-induced-by-afm-indentation-of-the-letters-nrl-and-afrl-c-afm-indents-produce-single-photon-emitter-ornaments-on-a-monolayer-wse2-christmas-tree-rtcn9y.jpg)
a) Illustration showing an atomic force microscope (AFM) tip indenting the transition-metal dichalcogenide/polymer structure to introduce local strain. (b) Patterned single photon emission in tungsten diselenide (WSe2) induced by AFM indentation of
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