Dongin Jeong

Dongin Jeong

KAIST

H-index: 6

Asia-South Korea

About Dongin Jeong

Dongin Jeong, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at KAIST, specializes in the field of optics, photonics, soliton, freqeuncy comb.

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

Spontaneous soliton mode-locking of a microcomb assisted by Raman scattering

Spectroscopic characterization of an on-chip squeezed quantum optical frequency comb

Ultralow-noise 22-GHz microwave generation from a fiber delayline-stabilized silica micro-comb

Spectroscopy characterization of quantum modes in an on-chip squeezed microcomb

Spectroscopic characterization of a squeezed quantum microcomb on a chip

Fabrication of an Inch-scale High-Q Fiber Ring Resonator

A quantum microcomb with 2.1 db raw squeezing

A continuous variable quantum microcomb with 2.1 dB raw squeezing

Dongin Jeong Information

University

Position

Graduate school of nanoscience and technology

Citations(all)

255

Citations(since 2020)

254

Cited By

21

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Dongin Jeong Skills & Research Interests

optics

photonics

soliton

freqeuncy comb

Top articles of Dongin Jeong

Spontaneous soliton mode-locking of a microcomb assisted by Raman scattering

Optics Express

2023/8/28

Dongin Jeong
Dongin Jeong

H-Index: 3

Hansuek Lee
Hansuek Lee

H-Index: 19

Spectroscopic characterization of an on-chip squeezed quantum optical frequency comb

2023/5/7

Ultralow-noise 22-GHz microwave generation from a fiber delayline-stabilized silica micro-comb

2023/5/7

Spectroscopy characterization of quantum modes in an on-chip squeezed microcomb

2023/3/5

Spectroscopic characterization of a squeezed quantum microcomb on a chip

2022/10/17

Fabrication of an Inch-scale High-Q Fiber Ring Resonator

2022/5/15

A quantum microcomb with 2.1 db raw squeezing

2022/5/15

A continuous variable quantum microcomb with 2.1 dB raw squeezing

2022/3/6

Ultrastable microwave and soliton-pulse generation from fibre-photonic-stabilized microcombs

Nature Communications

2022/1/19

Hydrophobic passivation of ultra-high-Q silica wedge resonators using hexamethyldisilazane

Optics Letters

2021/5/1

Self-stabilized soliton generation in a microresonator through mode-pulled Brillouin lasing

Optics Letters

2021/4/1

Microresonator-based squeezed optical frequency comb

2021/10/18

Squeezed optical frequency comb in a microresonator

2021/8/9

A squeezed quantum microcomb on a chip

Nature Communications

2021/8/6

Supercontinuum generation in As2S3 waveguides fabricated without direct etching

Optics Letters

2021/5/15

151-as jitter, 22-GHz pulse train from a silica microcomb

2021/5/9

Universal light-guiding geometry for on-chip resonators having extremely high Q-factor

Nature communications

2020/11/23

Ultralow jitter silica microcomb

Optica

2020/9/20

Octave-spanning supercontinuum generation in thermally deposited As2S3 waveguide on wet-etched SiO2 structure

2020/8/3

Ultralow-jitter 22-GHz silica microcomb

2020/8/3

See List of Professors in Dongin Jeong University(KAIST)