AbstractDespite its excellent performance in microelectronic industry, silicon was not able to perform well in photonic devices arena. This is because the silicon has never been a good optical source mainly due to its indirect band gap structure. Many of the device functionalities in silicon have been reported, with an exception of – until recently – a reliable optical source. Silicon is a nonlinear material which makes use of its nonlinearities to realize various functionalities. This paper presents a theoretical treatment of generating and enhancing third-harmonic field which may be used as optical source, crystal state monitoring and all-optical signal processing applications
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
AbstractDespite its excellent performance in microelectronic industry, silicon was not able to perfo...
Nowadays, nanostructures are routinely fabricated and integrated in different photonic devices for a...
We study second and third harmonic generation in centrosymmetric semiconductors at visible and UV wa...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
We report measurements of third-harmonic generation from ultrathin crystalline silicon layers of gra...
Silicon photonics lacks a second-order nonlinear optical response in general because the typical con...
We report measurements of third-harmonic generation from ultrathin crystalline silicon layers of gra...
Second-order nonlinear effects in silicon have shown great promise for producing all-optical, silico...
Silicon is a common material for photonics due to its favorable optical properties in the telecom an...
Using Fourier optics, we retrieve the wavevector dependence of the third-harmonic (green) light gene...
Abstract: We present an overview of the recent developments in nonlinear silicon photonics. There we...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
AbstractDespite its excellent performance in microelectronic industry, silicon was not able to perfo...
Nowadays, nanostructures are routinely fabricated and integrated in different photonic devices for a...
We study second and third harmonic generation in centrosymmetric semiconductors at visible and UV wa...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
We report measurements of third-harmonic generation from ultrathin crystalline silicon layers of gra...
Silicon photonics lacks a second-order nonlinear optical response in general because the typical con...
We report measurements of third-harmonic generation from ultrathin crystalline silicon layers of gra...
Second-order nonlinear effects in silicon have shown great promise for producing all-optical, silico...
Silicon is a common material for photonics due to its favorable optical properties in the telecom an...
Using Fourier optics, we retrieve the wavevector dependence of the third-harmonic (green) light gene...
Abstract: We present an overview of the recent developments in nonlinear silicon photonics. There we...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...