Experimental realization of wide-mode-area slow light modes in valley photonic crystal heterostructure waveguides

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Zhang, Chengkun, Lu, Guangtai, Pholsen, Nattujuks, Ota, Yasutomo, Iwamoto, Satoshi
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908372958183424
author Zhang, Chengkun
Lu, Guangtai
Pholsen, Nattujuks
Ota, Yasutomo
Iwamoto, Satoshi
author_facet Zhang, Chengkun
Lu, Guangtai
Pholsen, Nattujuks
Ota, Yasutomo
Iwamoto, Satoshi
contents We experimentally realized wide-mode-area slow-light modes in valley photonic crystals (VPhCs) heterostructure waveguides. The waveguides are fabricated on a silicon slab by inserting gapless photonic graphene layers with varying widths and modifying the unit cell spacing near the domain walls. By reducing the spacing between unit cells at the domain boundaries, slow-light guided modes are achieved in VPhCs heterostructure waveguides. The presence of wide-mode-area modes is verified by observing the radiation in light propagation of leaky guided modes above the light line. To characterize guided modes below the light line, we introduce air-slot terminations to induce out-of-plane scattering and measure intensity profiles. The results show that the mode widths are tunable for both fast-light and slow-light modes in VPhCs heterostructure waveguides by adjusting the number of photonic graphene layers. The ability to support wide-mode-area slow-light modes in VPhC heterostructures offers promising opportunities for the development of high-power, on-chip photonic integrated devices.
format Preprint
id arxiv_https___arxiv_org_abs_2505_15113
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Experimental realization of wide-mode-area slow light modes in valley photonic crystal heterostructure waveguides
Zhang, Chengkun
Lu, Guangtai
Pholsen, Nattujuks
Ota, Yasutomo
Iwamoto, Satoshi
Optics
We experimentally realized wide-mode-area slow-light modes in valley photonic crystals (VPhCs) heterostructure waveguides. The waveguides are fabricated on a silicon slab by inserting gapless photonic graphene layers with varying widths and modifying the unit cell spacing near the domain walls. By reducing the spacing between unit cells at the domain boundaries, slow-light guided modes are achieved in VPhCs heterostructure waveguides. The presence of wide-mode-area modes is verified by observing the radiation in light propagation of leaky guided modes above the light line. To characterize guided modes below the light line, we introduce air-slot terminations to induce out-of-plane scattering and measure intensity profiles. The results show that the mode widths are tunable for both fast-light and slow-light modes in VPhCs heterostructure waveguides by adjusting the number of photonic graphene layers. The ability to support wide-mode-area slow-light modes in VPhC heterostructures offers promising opportunities for the development of high-power, on-chip photonic integrated devices.
title Experimental realization of wide-mode-area slow light modes in valley photonic crystal heterostructure waveguides
topic Optics
url https://arxiv.org/abs/2505.15113