Separating the Material and Geometry Contribution to the Circular Dichroism of Chiral Objects Made from Chiral Media

Fuente: arXiv
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Main Authors: Rebholz, Lukas, Krstić, Marjan, Zerulla, Benedikt, Pawlak, Mateusz, Lewandowski, Wiktor, Fernandez-Corbaton, Ivan, Rockstuhl, Carsten
Format: Preprint
Published: 2024
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author Rebholz, Lukas
Krstić, Marjan
Zerulla, Benedikt
Pawlak, Mateusz
Lewandowski, Wiktor
Fernandez-Corbaton, Ivan
Rockstuhl, Carsten
author_facet Rebholz, Lukas
Krstić, Marjan
Zerulla, Benedikt
Pawlak, Mateusz
Lewandowski, Wiktor
Fernandez-Corbaton, Ivan
Rockstuhl, Carsten
contents The chirality of an object can be studied by measuring the circular dichroism, that is, the difference in absorption of light with different helicity. The chiral optical response of an object, however, can have two different origins. On the one hand, it can be linked to the chiral geometry of the object. On the other hand, it can be linked to the chiral material from which the object is made. Whereas previously, no distinction between the two contributions could be made, we report here a computational approach that allows us to separate these two contributions to the circular dichroism of an object. We consider separately the cases where geometry-related resonances affect the optical response and where they are absent. In both cases, we find the circular dichroism to be easily decomposable if a geometrically achiral object has a similar absorption spectrum to the chiral object under investigation. Furthermore, in the non-resonant case, the contribution attributed to the material can be obtained without taking any geometry into account. Besides being of fundamental importance, the possibility of disentangling both contributions will be important for guiding the future design of chiral objects and devices.
format Preprint
id arxiv_https___arxiv_org_abs_2401_06664
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Separating the Material and Geometry Contribution to the Circular Dichroism of Chiral Objects Made from Chiral Media
Rebholz, Lukas
Krstić, Marjan
Zerulla, Benedikt
Pawlak, Mateusz
Lewandowski, Wiktor
Fernandez-Corbaton, Ivan
Rockstuhl, Carsten
Optics
The chirality of an object can be studied by measuring the circular dichroism, that is, the difference in absorption of light with different helicity. The chiral optical response of an object, however, can have two different origins. On the one hand, it can be linked to the chiral geometry of the object. On the other hand, it can be linked to the chiral material from which the object is made. Whereas previously, no distinction between the two contributions could be made, we report here a computational approach that allows us to separate these two contributions to the circular dichroism of an object. We consider separately the cases where geometry-related resonances affect the optical response and where they are absent. In both cases, we find the circular dichroism to be easily decomposable if a geometrically achiral object has a similar absorption spectrum to the chiral object under investigation. Furthermore, in the non-resonant case, the contribution attributed to the material can be obtained without taking any geometry into account. Besides being of fundamental importance, the possibility of disentangling both contributions will be important for guiding the future design of chiral objects and devices.
title Separating the Material and Geometry Contribution to the Circular Dichroism of Chiral Objects Made from Chiral Media
topic Optics
url https://arxiv.org/abs/2401.06664