Ryan Nolen

Ryan Nolen

Vanderbilt University

H-index: 13

North America-United States

About Ryan Nolen

Ryan Nolen, With an exceptional h-index of 13 and a recent h-index of 13 (since 2020), a distinguished researcher at Vanderbilt University, specializes in the field of Metamaterials, Plasmonics, Infrared Spectroscopy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Extreme light confinement and control in low-symmetry phonon-polaritonic crystals

Observation of the thermal Rashba effect: custom polarization sorting in thermal emission

Coupled Tamm phonon and plasmon polaritons for designer planar multiresonance absorbers

Customized thermal and guided-wave surface emission with nonlocal metasurfaces

Arbitrarily polarized and unidirectional emission from thermal metasurfaces

Tunable, homoepitaxial hyperbolic metamaterials enabled by high mobility CdO

Mid‐ to Far‐Infrared Anisotropic Dielectric Function of HfS2 and HfSe2

Engineering the Dispersion of Surface Plasmon Polariton/Epsilon‐Near‐Zero Modes through Modal Separation and Optical Confinement

Ryan Nolen Information

University

Position

___

Citations(all)

714

Citations(since 2020)

714

Cited By

180

hIndex(all)

13

hIndex(since 2020)

13

i10Index(all)

13

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Ryan Nolen Skills & Research Interests

Metamaterials

Plasmonics

Infrared Spectroscopy

Top articles of Ryan Nolen

Extreme light confinement and control in low-symmetry phonon-polaritonic crystals

2024/1

Observation of the thermal Rashba effect: custom polarization sorting in thermal emission

2023/5/7

Coupled Tamm phonon and plasmon polaritons for designer planar multiresonance absorbers

Advanced Materials

2023/5

Customized thermal and guided-wave surface emission with nonlocal metasurfaces

2023/3/17

Arbitrarily polarized and unidirectional emission from thermal metasurfaces

arXiv preprint arXiv:2301.12301

2023/1/28

Tunable, homoepitaxial hyperbolic metamaterials enabled by high mobility CdO

Advanced optical materials

2023/1

Mid‐ to Far‐Infrared Anisotropic Dielectric Function of HfS2 and HfSe2

Advanced Optical Materials

2022/12

Engineering the Dispersion of Surface Plasmon Polariton/Epsilon‐Near‐Zero Modes through Modal Separation and Optical Confinement

Advanced photonics research

2022/12

Collective phonon–polaritonic modes in silicon carbide subarrays

ACS nano

2021/12/27

Deterministic inverse design of Tamm plasmon thermal emitters with multi-resonant control

Nature materials

2021/12

Engineering the Spectral and Spatial Dispersion of Thermal Emission via Strong Coupling

2021/6/24

Realizing Directional, Narrowband Thermal Emission through Control of Spectral Dispersion and Strong Coupling

2021/5/17

Deterministic Inverse Design of Lithography-Free, Wavelength-Selective Tamm Plasmon Thermal Emitters

2021/5/12

Mid-wave to near-IR optoelectronic properties and epsilon-near-zero behavior in indium-doped cadmium oxide

Physical Review Materials

2021/3/24

Filterless Nondispersive Infrared Sensing using Narrowband Infrared Emitting Metamaterials

Acs Photonics

2021/1/13

Long-lived modulation of plasmonic absorption by ballistic thermal injection

Nature nanotechnology

2021/1

Vibrational coupling to epsilon-near-zero waveguide modes

ACS photonics

2020/2/26

Near‐unity and narrowband thermal emissivity in balanced dielectric metasurfaces

Advanced Optical Materials

2020/2

Narrowband polaritonic thermal emitters driven by waste heat

ACS omega

2020/5/5

Long-lived modulation of plasmonic absorption by remote thermal injection

Bulletin of the American Physical Society

2020/3/3

See List of Professors in Ryan Nolen University(Vanderbilt University)

Co-Authors

academic-engine