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Photoinduced handedness switching in terahertz chiral metamolecules

机译:太赫兹手性大分子中的光致手性转换

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Switching the handedness, or the chirality, of a molecule is of great importance in chemistry and biology, as molecules of different handedness exhibit dramatically different physiological properties and pharmacological effects. Here we experimentally demonstrate handedness switching in metamaterials, a new class of custom-designed composites with deep subwavelength building blocks, in response to external optical stimuli. The metamolecule monolayer flips the ellipticity and rotates the polarization angle of light in excess of 10° under optical excitation, a much stronger electromagnetic effect than that of naturally available molecules. Furthermore, the experimentally demonstrated optical switching effect does not require a structural reconfiguration, which is typically involved in molecular chirality switching and is inherently slow. The handedness switching in chiral metamolecules allows electromagnetic control of the polarization of light and will find important applications in manipulation of terahertz waves, such as dynamically tunable terahertz circular polarizers and polarization modulators for terahertz radiations.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:切换分子的手性或手性在化学和生物学中非常重要,因为具有不同手性的分子表现出截然不同的生理特性和药理作用。在这里,我们通过实验证明超材料中的手控性切换,这是一类定制的具有深亚波长构造基团的新型复合材料,可以响应外部光学刺激。在光激发下,大分子单分子层翻转椭圆率并使光的偏振角旋转超过10°,这比天然分子的电磁作用强得多。此外,实验证明的光学转换效果不需要结构重新配置,该结构重新配置通常涉及分子手性转换并且固有地缓慢。手性大分子的旋向性转换允许电磁控制光的偏振,并将在太赫兹波的操纵中找到重要的应用,例如动态可调的太赫兹圆偏振器和太赫兹辐射的偏振调制器。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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