Aleksei Anopchenko

About Aleksei Anopchenko

Aleksei Anopchenko, With an exceptional h-index of 27 and a recent h-index of 13 (since 2020), a distinguished researcher at University of California, Irvine, specializes in the field of nanophotonics, plasmonics, silicon photonics, electromagnetic surface waves, optoelectronic devices.

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

Hollow core optical fiber enabled by epsilon-near-zero material

Controllable optical nonlinearity and ultrafast electron dynamic of epsilon-near-zero materials

Excitation of Epsilon‐Near‐Zero Mode in Optical Fiber

Neural network design of broadband epsilon near zero perfect optical absorbers

Epsilon-near-zero optics in planar and optical fiber platforms

Experimental demonstration of deep learning enabled ultra-broadband epsilon-near-zero perfect absorbers

Interplay between conduction and valence band electrons in nonlinear absorption of epsilon-near-zero oxides

Field enhancement of epsilon-near-zero modes in realistic ultrathin absorbing films

Aleksei Anopchenko Information

University

Position

Assistant Specialist Department of Physics & Astronomy

Citations(all)

2031

Citations(since 2020)

605

Cited By

1661

hIndex(all)

27

hIndex(since 2020)

13

i10Index(all)

47

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Aleksei Anopchenko Skills & Research Interests

nanophotonics

plasmonics

silicon photonics

electromagnetic surface waves

optoelectronic devices

Top articles of Aleksei Anopchenko

Hollow core optical fiber enabled by epsilon-near-zero material

Nanophotonics

2024/3/27

Controllable optical nonlinearity and ultrafast electron dynamic of epsilon-near-zero materials

2024/3/9

Excitation of Epsilon‐Near‐Zero Mode in Optical Fiber

Laser & Photonics Reviews

2023/3

Neural network design of broadband epsilon near zero perfect optical absorbers

Journal of Materials Chemistry C

2023

Epsilon-near-zero optics in planar and optical fiber platforms

50th Winter Colloquium on the Physics of Quantum Electronics (PQE 2020)

2019/1

Experimental demonstration of deep learning enabled ultra-broadband epsilon-near-zero perfect absorbers

2023/10/5

Interplay between conduction and valence band electrons in nonlinear absorption of epsilon-near-zero oxides

2023/10/5

Field enhancement of epsilon-near-zero modes in realistic ultrathin absorbing films

Nanophotonics

2023/7/14

Neural Network Design of Epsilon-Near-Zero Ultra-Broadband Perfect Absorbers

2022/10/17

Enhanced optical nonlinearity and carrier dynamics in nano-engineered epsilon-near-zero materials (Conference Presentation)

2022/10/13

Enhanced spontaneous emission on epsilon-near-zero thin films (Conference Presentation)

2022/10/4

Integrated optical fiber and epsilon-near-zero material

2023/6/1

Enhancement of optical nonlinearity and spontaneous emission in nano-engineered epsilon-near-zero materials

2021/8/3

Enhanced Spontaneous Emission of Monolayer MoS2 on Epitaxially Grown Titanium Nitride Epsilon-Near-Zero Thin Films

Nano Letters

2021/6/10

Hybrid planar and optical fiber waveguides integrated with epsilon-near-zero materials

2021/3/5

Enhanced Spontaneous Emission of MoS2 Monolayers on Epsilon-Near-Zero Substrates

2020/9/14

Atomic Layer Engineering of Epsilon‐Near‐Zero Ultrathin Films with Controllable Field Enhancement

Advanced Materials Interfaces

2020/9

Enhanced spontaneous emission of 2D materials on epsilon-near-zero substrates

2020/8/22

Field-effect tunable epsilon-near-zero absorber

2020/6/30

See List of Professors in Aleksei Anopchenko University(University of California, Irvine)

Co-Authors

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