Coherent control of optical activity and optical anisotropy of thin metamaterials release_padkokoconbpvazbwhoy42boky

by Seyedmohammad A. Mousavi, Eric Plum, Jinhui Shi, Nikolay I. Zheludev

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abstracts[] {'sha1': 'a45c8981914946051f2caf9f4a50e3d80cde9fcd', 'content': 'The future fibre optic communications network will rely on photons as\ncarriers of information, which may be stored in intensity, polarization or\nphase of light. However, processing of such optical information usually relies\non electronics. Aiming to avoid the conversion between optical and electronic\nsignals, modulation of light with light based on optical nonlinearity has\nbecome a major research field, but real integrated all-optical systems face\nthermal management and energy challenges. On the other hand, it has recently\nbeen demonstrated that the interaction of two coherent light beams on a thin,\nlossy, linear material can lead to large and ultrafast intensity modulation at\narbitrarily low power resulting from coherent absorption. Here we demonstrate\nthat birefringence and optical activity (linear and circular birefringence and\ndichroism) of functional materials can be coherently controlled by placing a\nthin material slab into a standing wave formed by the signal and control waves.\nEfficient control of the polarization azimuth and ellipticity of the signal\nwave with the coherent control wave has been demonstrated in proof-of-principle\nexperiments in different chiral and anisotropic microwave metamaterials.', 'mimetype': 'text/plain', 'lang': 'en'}
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{'index': 1, 'creator_id': None, 'creator': None, 'raw_name': 'Eric Plum', 'given_name': None, 'surname': None, 'role': 'author', 'raw_affiliation': None, 'extra': None}
{'index': 2, 'creator_id': None, 'creator': None, 'raw_name': 'Jinhui Shi', 'given_name': None, 'surname': None, 'role': 'author', 'raw_affiliation': None, 'extra': None}
{'index': 3, 'creator_id': None, 'creator': None, 'raw_name': 'Nikolay I.\n Zheludev', 'given_name': None, 'surname': None, 'role': 'author', 'raw_affiliation': None, 'extra': None}
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language en
license_slug ARXIV-1.0
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release_date 2013-12-02
release_stage submitted
release_type article
release_year 2013
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title Coherent control of optical activity and optical anisotropy of thin metamaterials
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work_id ceyg3jzwkbh5letsg3tcgscot4
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arxiv.base_id 1312.0414
arxiv.categories ['physics.optics']
arxiv.comments 11 pages, 7 figures
arxiv.journal_ref Sci. Rep. 5(17), 8977 (2015)