In this work we explore the negative thermo-optic properties of liquid crystal claddings for passive temperature stabilization of silicon photonic integrated circuits. Photonic circuits are playing an increasing role in communications and computing, but they suffer from temperature dependent performance variation. Most existing techniques aimed at compensation of thermal effects rely on power hungry Joule heating. We show that integrating a liquid crystal cladding helps to minimize the effects of a temperature dependent drift. The advantage of liquid crystals lies in their high negative thermo-optic coefficients in addition to low absorption at the infrared wavelengths
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
The paper presents optical and thermal simulations of two kinds of thermally controlled silicon Phot...
In recent years, silicon based optical interconnects has been pursued as an effective solution that ...
Photonics is an evolving field allowing for optical devices to be made cost effectively using standa...
We investigate the influence of the substrate on a photonic crystal thermo-optic device on a silicon...
In this paper we show two approaches to fabricate photonic channels on different substrate technolog...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Low-power and compact phase shifters are crucial for large photonic circuits, both to cope with vari...
Wavelength-dependent birefringence and dielectric anisotropy, two major optical properties of the ne...
We investigate and demonstrate the thermal crosstalk problem in integrated photonic circuits with me...
Abstract: We describe a novel approach for CMOS-compatible passively temperature insensitive silicon...
Wavelength-dependent birefringence and dielectric anisotropy, two major optical properties of the ne...
The paper presents optical and thermal simulations of two kinds of thermally controlled silicon Phot...
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
The paper presents optical and thermal simulations of two kinds of thermally controlled silicon Phot...
In recent years, silicon based optical interconnects has been pursued as an effective solution that ...
Photonics is an evolving field allowing for optical devices to be made cost effectively using standa...
We investigate the influence of the substrate on a photonic crystal thermo-optic device on a silicon...
In this paper we show two approaches to fabricate photonic channels on different substrate technolog...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective re...
Low-power and compact phase shifters are crucial for large photonic circuits, both to cope with vari...
Wavelength-dependent birefringence and dielectric anisotropy, two major optical properties of the ne...
We investigate and demonstrate the thermal crosstalk problem in integrated photonic circuits with me...
Abstract: We describe a novel approach for CMOS-compatible passively temperature insensitive silicon...
Wavelength-dependent birefringence and dielectric anisotropy, two major optical properties of the ne...
The paper presents optical and thermal simulations of two kinds of thermally controlled silicon Phot...
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
In this paper, we characterize the Thermo-optic properties of silicon nitride ring resonators betwee...
The paper presents optical and thermal simulations of two kinds of thermally controlled silicon Phot...