krishna Karki

About krishna Karki

krishna Karki, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at University of Alabama at Birmingham, specializes in the field of Laser, optics, semiconductor.

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

High energy mechanically Q-switched Er: YAG laser operating at 2940 nm

Resonant nonlinear refraction of light in CO and gas

Lasing in 15 atm CO2 cell optically pumped by a Fe:ZnSe laser

10 µm lasing in multi-atmosphere CO2 optically pumped by a tunable 4.3 µm laser

Room temperature hot-pressed Fe: ZnSe ceramic laser

High energy (0.8 J) mechanically Q-switched Er: YAG laser

Room temperature 60 mJ Fe: ZnSe MOPA laser system tunable over 3.6-5.2 µm spectral range

Gain switched Fe: ZnSe hot-pressed ceramic laser

krishna Karki Information

University

Position

Graduate student

Citations(all)

174

Citations(since 2020)

174

Cited By

44

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

krishna Karki Skills & Research Interests

Laser

optics

semiconductor

Top articles of krishna Karki

High energy mechanically Q-switched Er: YAG laser operating at 2940 nm

2022/5/30

Resonant nonlinear refraction of light in CO and gas

Physical Review A

2021/10/21

Lasing in 15 atm CO2 cell optically pumped by a Fe:ZnSe laser

Optics Express

2021/7

10 µm lasing in multi-atmosphere CO2 optically pumped by a tunable 4.3 µm laser

2021/5/9

Room temperature hot-pressed Fe: ZnSe ceramic laser

2021/5/9

High energy (0.8 J) mechanically Q-switched Er: YAG laser

2021/3/5

Room temperature 60 mJ Fe: ZnSe MOPA laser system tunable over 3.6-5.2 µm spectral range

2021/3/5

Gain switched Fe: ZnSe hot-pressed ceramic laser

2021/3/5

Laser Spectroscopy, Amplification, and Laser Properties of Fe: ZnSe Mid-Ir Gain Media Under Er: Yag Laser Excitation

2021

Krishna Karki
Krishna Karki

H-Index: 3

High energy (0.8 J) mechanically Q-switched 2.94 μm Er:YAG laser

Optical Express

2021/1

High Energy Mechanically Q-switched 2.94 μm Er: YAG Laser

2020/10/13

Gain switched hot-pressed Fe: ZnSe ceramic laser

2020/10/13

Gain dynamics in a CO2 active medium optically pumped at 4.3 μm

Journal of Applied Physics

2020/9/14

Observation of High Gain in a CO2 Amplifier Pumped by a 4.3 μm Laser

2020/5/10

The fast resonant rovibrational nonlinearity of CO and CO2 in the mid-IR

2020/5/10

Fe: ZnSe hot-pressed ceramic laser

2020/5/10

Spectroscopic characterization of Fe: ZnAl2O4, Fe: MgAl2O4 and Fe: InP crystals for mid-IR laser applications

2020/2/21

Recent progress in mechanically Q-switched 2.94 um Er: YAG–promising pump source for 4-um room temperature Fe: ZnSe lasers

2020/2/21

Hot-pressed ceramic Fe:ZnSe gain-switched laser

Optical Materials Express

2020

Room temperature, nanosecond, 60 mJ/pulse Fe:ZnSe master oscillator power amplifier system operating over 3.6-5.1 µm

Optical Express

2020/12

See List of Professors in krishna Karki University(University of Alabama at Birmingham)