Hossein Taghinejad

About Hossein Taghinejad

Hossein Taghinejad, With an exceptional h-index of 20 and a recent h-index of 18 (since 2020), a distinguished researcher at University of California, Berkeley, specializes in the field of Quantum Materials, 2D Materials, Spintronic, Electronic Materials.

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

Manipulating chiral spin transport with ferroelectric polarization

Structured light meets functional nanostructures for encoding and decoding information

Uniaxial magnon spin transport in electric field controlled chiral antiferromagnetic insulator

Designed spin-texture-lattice to control anisotropic magnon transport in antiferromagnets

Methods and systems for reconfigurable hybrid metasurfaces

Tracking the evolution from isolated dimers to many-body entanglement in

Electrically driven reprogrammable phase-change metasurface reaching 80% efficiency

Non-Local Spin Transport Driven by Spin Seebeck Effect in a Heisenberg Antiferromagnet

Hossein Taghinejad Information

University

Position

___

Citations(all)

1689

Citations(since 2020)

1380

Cited By

734

hIndex(all)

20

hIndex(since 2020)

18

i10Index(all)

26

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Hossein Taghinejad Skills & Research Interests

Quantum Materials

2D Materials

Spintronic

Electronic Materials

Top articles of Hossein Taghinejad

Manipulating chiral spin transport with ferroelectric polarization

arXiv preprint arXiv:2306.02185

2023/6/3

Structured light meets functional nanostructures for encoding and decoding information

2024/3/13

Uniaxial magnon spin transport in electric field controlled chiral antiferromagnetic insulator

Bulletin of the American Physical Society

2024/3/7

Designed spin-texture-lattice to control anisotropic magnon transport in antiferromagnets

arXiv preprint arXiv:2402.12341

2024/2/19

Methods and systems for reconfigurable hybrid metasurfaces

2023/9/14

Tracking the evolution from isolated dimers to many-body entanglement in

Physical Review B

2022/7/7

Electrically driven reprogrammable phase-change metasurface reaching 80% efficiency

Nature communications

2022/3/30

Non-Local Spin Transport Driven by Spin Seebeck Effect in a Heisenberg Antiferromagnet

APS March Meeting Abstracts

2022

Ultra-Confined Lateral Heterostructures in 2D Semiconductors

APS March Meeting Abstracts

2022

Probing spin transport in unconventional magnetic insulators

APS March Meeting Abstracts

2022

Hossein Taghinejad
Hossein Taghinejad

H-Index: 14

James Analytis
James Analytis

H-Index: 43

Using spin-orbit heavy metals as a probe for emergent phases in a honeycomb insulator

APS March Meeting Abstracts

2021

Spin-orbit coupled heavy metals as a probe of frustrated magnetic systems

APS March Meeting Abstracts

2021

Ultra-miniaturized lateral heterostructures in 2D semiconductors

2021/8/3

Hossein Taghinejad
Hossein Taghinejad

H-Index: 14

Ali Adibi
Ali Adibi

H-Index: 2

ITO-based microheaters for reversible multi-stage switching of phase-change materials: towards miniaturized beyond-binary reconfigurable integrated photonics

Optics Express

2021/6/21

Electrically tunable phase-change metasurfaces using transparent conductive oxide microheaters

2021/5/9

Hossein Taghinejad
Hossein Taghinejad

H-Index: 14

Ali Adibi
Ali Adibi

H-Index: 2

Tunable nanophotonics enabled by chalcogenide phase-change materials

Nanophotonics

2020/6/6

Synthesis of alloys and lateral heterostructures of atomically thin transition-metal dichalcogenides for optoelectronic applications

2020/5/18

Hossein Taghinejad
Hossein Taghinejad

H-Index: 14

Optical Tuning of Second-Order Optical Nonlinearity in Transition Metal Dichalcogenides

2020/5/10

See List of Professors in Hossein Taghinejad University(University of California, Berkeley)

Co-Authors

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