We propose a general, easy-to-implement scheme for broadband coherent perfect absorption (CPA) using epsilon-near-zero (ENZ) multilayer films. Specifically, we employ indium tin oxide (ITO) as a tunable ENZ material, and theoretically investigate CPA in the near-infrared region. We first derive general CPA conditions using the scattering matrix and the admittance matching methods. Then, by combining these two methods, we extract analytic expressions for all relevant parameters for CPA. Based on this theoretical framework, we proceed to study ENZ CPA in a single layer ITO film and apply it to all-optical switching. Finally, using an ITO multilayer of different ENZ wavelengths, we implement broadband ENZ CPA structures and investigate multi-w...
In this talk, we will discuss our recent work on natural ENZ materials. We have investigated various...
In this work, by using a broadspectrum angle-resolved absorption technique, we studied enhanced abso...
Broadband dispersion free, large and ultrafast nonlinear material platforms comprise the essential f...
Coherent perfect absorption (CPA) is an optical phenomenon in an absorbing medium by interaction of ...
Interferometric effects between two counter-propagating beams incident on an optical system can lead...
Perfect absorption (PA) of incident light is important for both fundamental light-matter interaction...
In this study, we report ITO thin film designs for epsilon-near-zero coherent perfect absorption in ...
We experimentally demonstrate single beam directional perfect absorption (to within experimental acc...
In this study we demonstrate tunable epsilon-near-zero wavelength and broadband perfect absorption i...
We propose a broadband coherent perfect absorption thin film device based on epsilonnear- zero indiu...
We report perfect light absorption due to the excitation of bound and radiative <i>p</i>-polarized o...
Absorption plays a critical role in a variety of optical applications – sometimes it is desirable to...
In this study we demonstrate tunable and broadband perfect absorption in epsilon-near-zero ITO thin ...
Using epsilon-near-zero (ENZ) subwavelength optical multilayer materials with simple structure and t...
One of the longstanding goals of photonics research has been to obtain strong optical nonlinearities...
In this talk, we will discuss our recent work on natural ENZ materials. We have investigated various...
In this work, by using a broadspectrum angle-resolved absorption technique, we studied enhanced abso...
Broadband dispersion free, large and ultrafast nonlinear material platforms comprise the essential f...
Coherent perfect absorption (CPA) is an optical phenomenon in an absorbing medium by interaction of ...
Interferometric effects between two counter-propagating beams incident on an optical system can lead...
Perfect absorption (PA) of incident light is important for both fundamental light-matter interaction...
In this study, we report ITO thin film designs for epsilon-near-zero coherent perfect absorption in ...
We experimentally demonstrate single beam directional perfect absorption (to within experimental acc...
In this study we demonstrate tunable epsilon-near-zero wavelength and broadband perfect absorption i...
We propose a broadband coherent perfect absorption thin film device based on epsilonnear- zero indiu...
We report perfect light absorption due to the excitation of bound and radiative <i>p</i>-polarized o...
Absorption plays a critical role in a variety of optical applications – sometimes it is desirable to...
In this study we demonstrate tunable and broadband perfect absorption in epsilon-near-zero ITO thin ...
Using epsilon-near-zero (ENZ) subwavelength optical multilayer materials with simple structure and t...
One of the longstanding goals of photonics research has been to obtain strong optical nonlinearities...
In this talk, we will discuss our recent work on natural ENZ materials. We have investigated various...
In this work, by using a broadspectrum angle-resolved absorption technique, we studied enhanced abso...
Broadband dispersion free, large and ultrafast nonlinear material platforms comprise the essential f...