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20162023
most citedPost-2000 Nonlinear Optical Materials and Measurements: Data Tables and Best Practices

75 citations · 131 across the 4 of their papers we have counts for

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Showing physics.opticsShow all

6 papers · 1 filter

physics.optics2023★ 54 cited

New horizons in near-zero refractive index photonics and hyperbolic metamaterials

Michaël Lobet, Nathaniel Kinsey, Iñigo Liberal +7

The engineering of the spatial and temporal properties of both the electric permittivity and the refractive index of materials is at the core of photonics. When vanishing to zero,…

physics.optics2023★ 75 cited

Post-2000 Nonlinear Optical Materials and Measurements: Data Tables and Best Practices

Nathalie Vermeulen, Daniel Espinosa, Adam Ball +19

In its 60 years of existence, the field of nonlinear optics has gained momentum especially over the past two decades thanks to major breakthroughs in material science and technolog…

physics.optics2022★ 2 cited

Gallium-doped Zinc Oxide: Nonlinear Reflection and Transmission Measurements and Modeling in the ENZ Region

Adam Ball, Ray Secondo, Benjamin T. Diroll +5

Strong nonlinear materials have been sought after for decades for applications in telecommunications, sensing, and quantum optics. Gallium-doped zinc oxide is a II-VI transparent c…

physics.optics2020

Fast and slow nonlinearities in ENZ materials

Jacob B. Khurgin, Matteo Clerici, Nathaniel Kinsey

Novel materials, with enhanced light-matter interaction capabilities, play an essential role in achieving the lofty goals of nonlinear optics. Recently, Epsilon-Near-Zero (ENZ) med…

physics.optics2020

Absorptive loss and band non-parabolicity as a physical origin of large nonlinearity in epsilon-near-zero materials

Ray Secondo, Jacob B. Khurgin, Nathaniel Kinsey

For decades, nonlinear optics has been used to control the frequency and propagation of light in unique ways enabling a wide range of applications such as ultrafast lasing, sub-wav…

physics.optics2016

Enhanced nonlinear refractive index in epsilon-near-zero materials

L. Caspani, R. P. M. Kaipurath, M. Clerici +9

New propagation regimes for light arise from the ability to tune the dielectric permittivity to extremely low values. Here we demonstrate a universal approach based on the low line…