Optical Phase Change Materials
The last decade has witnessed a vast interest in utilizing this material family for optics and photonics, given their large refractive index modulation, nonvolatility—elusive in optics—and
GDR Telecom Site Energy Systems provides robust power solutions for telecom infrastructure: outdoor cabinets, solar systems, UPS, lithium storage, tower energy management, and remote power feeding across Africa.
HOME / Pluggable phase change materials for optical modules - GDR Telecom Site Energy Systems
Pluggable phase change materials for optical modules - GDR Telecom Site Energy Systems [PDF]
The last decade has witnessed a vast interest in utilizing this material family for optics and photonics, given their large refractive index modulation, nonvolatility—elusive in optics—and
One major project, NEUROPULS, is developing ultra-low-loss non-volatile phase shifters and Mach-Zehnder interferometers (MZIs) using GeSe-based PCMs, which exhibit extremely small optical
Phase-change materials (PCMs) have been growing in interest over the last decade for photonic applications. In this article, we will firstly review their properties and their key benefits with respect to
Phase Change Materials (PCMs) have demonstrated tremendous potential as a platform for achieving diverse functionalities in active and reconfigurable micro-nanophotonic devices across
This review seeks to highlight the progress thus far made in on-chip devices derived from phase change materials including memory devices,
This paper introduces a plasmonic waveguide reconfigurability framework founded on the incorporation of phase-change materials (PCMs) with the aim of developing dynamic and efficient
This material exhibits excellent wetting at interfaces during typical operating temperature ranges, resulting in very low surface contact resistance. Honeywell RTM-X22 Pluggable TIM for pluggable
Chalcogenide phase-change materials (PCMs) have been a key component in various iterations of optical disk technologies and intensely
Abstract: O-PCMs uniquely offer exceptionally large refractive index modulation with minimal loss penalty, made possible through a dielectric-dielectric structural transition. Here we discuss our recent
PCMs have injected new life into on-chip photonic integrated circuits, which generally contain an optical switch, an optical logical gate, and an optical modulator.
Here, the authors introduce optical phase change materials based on Ge-Sb-Se-Te which breaks the coupling between refractive index and optical loss allowing low-loss performance