Leila Hajshahvaladi

About Leila Hajshahvaladi

Leila Hajshahvaladi, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Amirkabir University of Technology, specializes in the field of Integrated Photonic Devices, Quantum Photonics, Micro/Nano Fabrications, Plasmonics.

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

Realization of a single-mode plasmonic bandpass filter based on a ring-shaped resonator and silver nanorods

A single-mode tunable plasmonic sensor based on an 8-shaped resonator for cancer cell detection

Hybridization of surface plasmons and photonic crystal resonators for high-sensitivity and high-resolution sensing applications

A very high-resolution refractive index sensor based on hybrid topology of photonic crystal cavity and plasmonic nested split-ring resonator

The effect of metal rods in a hybrid plasmonic-photonic crystal cavity design

Realization of a high-resolution plasmonic refractive index sensor based on double-nanodisk shaped resonators

Design of a highly sensitive tunable plasmonic refractive index sensor based on a ring-shaped nano-resonator

Patterned synthesis of nanowires in microheaters: design and operational aspects

Leila Hajshahvaladi Information

University

Position

PHD Student Electrical Eng. Dept. Iran

Citations(all)

193

Citations(since 2020)

189

Cited By

14

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Leila Hajshahvaladi Skills & Research Interests

Integrated Photonic Devices

Quantum Photonics

Micro/Nano Fabrications

Plasmonics

Top articles of Leila Hajshahvaladi

Realization of a single-mode plasmonic bandpass filter based on a ring-shaped resonator and silver nanorods

Optical and Quantum Electronics

2024/1

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

A single-mode tunable plasmonic sensor based on an 8-shaped resonator for cancer cell detection

Scientific Reports

2023/8/26

Mohammad Danaie
Mohammad Danaie

H-Index: 18

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Hybridization of surface plasmons and photonic crystal resonators for high-sensitivity and high-resolution sensing applications

Scientific Reports

2022/12/9

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

A very high-resolution refractive index sensor based on hybrid topology of photonic crystal cavity and plasmonic nested split-ring resonator

Photonics and Nanostructures-Fundamentals and Applications

2022/9/1

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

The effect of metal rods in a hybrid plasmonic-photonic crystal cavity design

2022/5/17

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

Realization of a high-resolution plasmonic refractive index sensor based on double-nanodisk shaped resonators

2022/5/17

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

Design of a highly sensitive tunable plasmonic refractive index sensor based on a ring-shaped nano-resonator

Optical and Quantum Electronics

2022/1

Patterned synthesis of nanowires in microheaters: design and operational aspects

2022/1

A high-sensitivity refractive index biosensor based on Si nanorings coupled to plasmonic nanohole arrays for glucose detection in water solution

Optics Communications

2022/1/1

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

Design of a hybrid photonic-plasmonic crystal refractive index sensor for highly sensitive and high-resolution sensing applications

Physics Letters A

2021/12/30

Leila Hajshahvaladi
Leila Hajshahvaladi

H-Index: 2

Mohammad Danaie
Mohammad Danaie

H-Index: 18

See List of Professors in Leila Hajshahvaladi University(Amirkabir University of Technology)

Co-Authors

academic-engine