Generation of Schubert polynomial series via nanometre-scale photoisomerization in photochromic single crystal and double-probe optical near-field measurements

Author:

Uchiyama KazuharuORCID,Suzui Hirotsugu,Nakagomi Ryo,Saigo Hayato,Uchida KingoORCID,Naruse Makoto,Hori Hirokazu

Abstract

AbstractGeneration of irregular time series based on physical processes is indispensable in computing and artificial intelligence. In this report, we propose and demonstrate the generation of Schubert polynomials, which are the foundation of versatile permutations in mathematics, via optical near-field processes introduced in a photochromic crystal of diarylethene combined with a simple photon detection protocol. Optical near-field excitation on the surface of a photochromic single crystal yields a chain of local photoisomerization, forming a complex pattern on the opposite side of the crystal. The incoming photon travels through the nanostructured photochromic crystal, and the exit position of the photon exhibits a versatile pattern. We emulated trains of photons based on the optical pattern experimentally observed through double-probe optical near-field microscopy, where the detection position was determined based on a simple protocol, leading to Schubert matrices corresponding to Schubert polynomials. The versatility and correlations of the generated Schubert matrices could be reconfigured in either a soft or hard manner by adjusting the photon detection sensitivity. This is the first study of Schubert polynomial generation via physical processes or nanophotonics, paving the way for future nano-scale intelligence devices and systems.

Funder

MEXT | Japan Society for the Promotion of Science

MEXT | Japan Science and Technology Agency

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. History-dependent nano-photoisomerization by optical near-field in photochromic single crystals;Communications Materials;2024-03-01

2. Mathematical modeling of morphological changes in photochromic crystals by catastrophe theory;Journal of Applied Physics;2023-02-06

3. Spatio-temporal description of the origin of optical-near-field interactions;Japanese Journal of Applied Physics;2022-12-23

4. Order recognition by Schubert polynomials generated by optical near-field statistics via nanometre-scale photochromism;Scientific Reports;2022-11-08

5. Photonic Approach to Reinforcement Learning;2022 27th OptoElectronics and Communications Conference (OECC) and 2022 International Conference on Photonics in Switching and Computing (PSC);2022-07-03

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