Haoran Qin

About Haoran Qin

Haoran Qin, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at Tsinghua University, specializes in the field of atomic clock, optical frequency comb, ultra-stable laser.

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

Absolute frequency measurement of molecular iodine hyperfine transitions at 554 nm and its application to stabilize a 369 nm laser for Y b+ ions cooling

High-Performance Microwave Frequency Standard Systems Based on the Ground-State Hyperfine Splitting of 171Yb+ and 113Cd+ Ions

Precise determination of ground-state hyperfine splitting and calculation of Zeeman coefficients for 171Yb+ microwave frequency standard

174Yb+–113Cd+ sympathetic-cooling bi-species Coulomb crystal applied to microwave frequency standard

- sympathetic-cooling bi-species Coulomb crystal applied to microwave frequency standard

Sympathetic cooling of a large 113Cd+ ion crystal with 40Ca+ in a linear Paul trap

Progress on Ion Microwave Frequency Standards at Tsinghua University

Second-order Doppler frequency shifts of trapped ions in a linear Paul trap

Haoran Qin Information

University

Position

___

Citations(all)

81

Citations(since 2020)

81

Cited By

0

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

3

i10Index(since 2020)

3

Email

University Profile Page

Google Scholar

Haoran Qin Skills & Research Interests

atomic clock

optical frequency comb

ultra-stable laser

Top articles of Haoran Qin

Absolute frequency measurement of molecular iodine hyperfine transitions at 554 nm and its application to stabilize a 369 nm laser for Y b+ ions cooling

Chinese Journal of Physics

2024/4/1

High-Performance Microwave Frequency Standard Systems Based on the Ground-State Hyperfine Splitting of 171Yb+ and 113Cd+ Ions

2023/11/2

Precise determination of ground-state hyperfine splitting and calculation of Zeeman coefficients for 171Yb+ microwave frequency standard

arXiv preprint arXiv:2309.05323

2023/9/11

174Yb+–113Cd+ sympathetic-cooling bi-species Coulomb crystal applied to microwave frequency standard

Applied Physics Letters

2023/8/21

- sympathetic-cooling bi-species Coulomb crystal applied to microwave frequency standard

arXiv preprint arXiv:2307.01656

2023/7/4

Sympathetic cooling of a large 113Cd+ ion crystal with 40Ca+ in a linear Paul trap

Chinese journal of physics

2023/6/1

Progress on Ion Microwave Frequency Standards at Tsinghua University

2023/5/15

Second-order Doppler frequency shifts of trapped ions in a linear Paul trap

Physical Review A

2022/9/29

High-Performance Microwave Frequency Standard Based on Sympathetically Cooled Ions

Physical Review Applied

2022/8/8

Determination of hyperfine splittings and Landé factors of and states of for microwave frequency standards

Physical Review A

2022/7/27

Laser-cooled 171Yb+ microwave frequency standard with a short-term frequency instability of 8.5 × 10−13/√τ

Optics Express

2022/4/25

Progress Towards a Microwave Frequency Standard Based on Sympathetically-cooled 113Cd+ Ions

2022/4/24

A Microwave Clock Based on Laser-Cooled 171Yb+ Ions

2022/4/24

Progress toward a microwave frequency standard based on laser-cooled large scale 171Yb+ ion crystal

arXiv preprint arXiv:2201.02937

2022/1/9

Precision determination of the ground-state hyperfine splitting of trapped 113Cd+ ions

Optics letters

2021/12/1

Research on the ions’ axial temperature of a sympathetically-cooled 113Cd+ ion crystal

Chinese Physics B

2021/11/1

Research On Sympathetic Cooling 113Cd+-174Yb+ System By Molecular Dynamics Simulation

2021/7/7

Toward a high-performance transportable microwave frequency standard based on sympathetically cooled 113Cd+ ions

Applied Physics Letters

2021/3/8

Sympathetic cooling of Cd by laser-cooled Ca in a linear Paul trap for Microwave Ion Clocks

arXiv preprint arXiv:2002.04228

2020/2/11

See List of Professors in Haoran Qin University(Tsinghua University)