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Novel effects of strains in graphene and other two dimensional materials

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arxiv 1503.00747 v3 pith:ANHRJW6A submitted 2015-03-02 cond-mat.mes-hall

Novel effects of strains in graphene and other two dimensional materials

classification cond-mat.mes-hall
keywords graphenepropertiesdimensionalelectronicotherstrainseffectsmaterials
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The analysis of the electronic properties of strained or lattice deformed graphene combines ideas from classical condensed matter physics, soft matter, and geometrical aspects of quantum field theory (QFT) in curved spaces. Recent theoretical and experimental work shows the influence of strains in many properties of graphene not considered before, such as electronic transport, spin-orbit coupling, the formation of Moir\'e patterns, optics, ... There is also significant evidence of anharmonic effects, which can modify the structural properties of graphene. These phenomena are not restricted to graphene, and they are being intensively studied in other two dimensional materials, such as the metallic dichalcogenides. We review here recent developments related to the role of strains in the structural and electronic properties of graphene and other two dimensional compounds.

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