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Dive into the research topics where Shaimaa I. Azzam is active.

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Featured researches published by Shaimaa I. Azzam.


Active Photonic Platforms X | 2018

MXenes for nanophotonic and metamaterial devices (Conference Presentation)

Yury Gogotsi; Alexandra Boltasseva; Krishnakali Chaudhuri; Zhuoxian Wang; Mohamed Alhabeb; Xiangeng Meng; Shaimaa I. Azzam; Alexander V. Kildishev; Young L. Kim; Vladimir M. Shalaev

MXenes are a recently discovered family of two-dimensional nanomaterials formed of transition metal carbides and carbon nitrides with the general chemical form Mn+1XnTx, where ‘M’ is a transitional metal, ‘X’ is either C or N, and ‘T’ represents a surface functional group (O, -OH or -F). MXenes are derived from layered ternary carbides and nitrides known as MAX (Mn+1AXn) phases by selective chemical etching of the ‘A’ layers and addition of functional groups ‘T’. In our work, we focus on one of the most well studied MXene, titanium carbide (Ti3C2Tx). Single to few layer flakes of Ti3C2Tx (in a solution dispersed form) are used to create a continuous film on a desired substrate by using spin coating technique. Losses inherent to the bulk MXene and existence of strong localized SP resonances in Ti3C2Tx disks/pillar-like nanostructures at near-IR frequencies are utilized to design an efficient broadband absorber. For Ti3C2Tx MXene disk array sitting on a bilayer stack of Au/Al2O3, high efficiency (>90%) absorption across visible to near-IR frequencies (bandwidth ~1.55 μm), is observed experimentally. We also experimentally study random lasing behavior in a metamaterial constructed by randomly dispersing single layer nanosheets of Ti3C2Tx into a gain medium (rhodamine 101, R101). Sharp lasing peaks are observed when the pump energy reaches the threshold value of ~ 0.70 μJ/pulse. This active metamaterial holds a great potential to achieve tunable random lasing by changing the optical properties of Ti3C2Tx flakes.


conference on lasers and electro optics | 2018

MXenes for Plasmonic and Metamaterial Devices

Zhuoxian Wang; Krishnakali Chaudhuri; Mohamed Alhabeb; Xiangeng Meng; Shaimaa I. Azzam; Alexander V. Kildishev; Young L. Kim; Vladimir M. Shalaev; Yury Gogotsi; Alexandra Boltasseva


conference on lasers and electro optics | 2018

Enhanced Spontaneous Emission of Quantum Emitters in the Vicinity of TiN Thin Films

Shaimaa I. Azzam; Motoharu Saito; Shunsuke Murai; Satoshi Ishii; Katsuhisa Tanaka; Alexander V. Kildishev


arxiv:physics.app-ph | 2018

All-optical Nonlinear Activation Function for Photonic Neural Networks

Mario Miscuglio; Armin Mehrabian; Zibo Hu; Shaimaa I. Azzam; Jonathan K. George; Alexander V. Kildishev; Matthew Pelton; Volker J. Sorger


arXiv: Optics | 2018

Full-wave analysis of reverse saturable absorption in time-domain.

Shaimaa I. Azzam; Alexander V. Kildishev


arXiv: Optics | 2018

Formation of Bound States in the Continuum in Hybrid Plasmonic-Photonic Systems.

Shaimaa I. Azzam; Vladimir M. Shalaev; Alexandra Boltasseva; Alexander V. Kildishev


Optics Letters | 2018

Plasmonic metasurfaces for subtractive color filtering: optimized nonlinear regression models

Walied Sabra; Shaimaa I. Azzam; Maowen Song; Michael Povolotskyi; Arafa H. Aly; Alexander V. Kildishev


Laser & Photonics Reviews | 2018

Exploring Time‐Resolved Multiphysics of Active Plasmonic Systems with Experiment‐Based Gain Models

Shaimaa I. Azzam; Jieran Fang; Jingjing Liu; Zhuoxian Wang; N. Arnold; Thomas A. Klar; Ludmila J. Prokopeva; Xiangeng Meng; Vladimir M. Shalaev; Alexander V. Kildishev


Active Photonic Platforms X | 2018

Active and tunable metadevices in time domain: multiphysics modeling framework (Conference Presentation)

Ludmila J. Prokopeva; Shaimaa I. Azzam; Zhaxylyk Kudyshev; Michael Povolotskyi; Alexander V. Kildishev


2018 International Applied Computational Electromagnetics Society Symposium (ACES) | 2018

Modeling time domain multiphysics of reverse saturable absorption

Shaimaa I. Azzam; Alexander V. Kildishev

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