John McInerney

About John McInerney

John McInerney, With an exceptional h-index of 38 and a recent h-index of 14 (since 2020), a distinguished researcher at University College Cork,

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

Broadband 1.5 GHz VECSEL-Based Laser System for High Speed Multicontrast Nonlinear Imaging

Ameliorating the stability of erbium-doped fiber laser using saturable absorber fabricated by the pulsed laser deposition technique

Control of Timing Stability, and Suppression in Delayed Feedback Induced Frequency-Fluctuations by Means of Power Split Ratio and Delay Phase-Dependent Dual-Loop Optical Feedback

Stabilization of Self-Mode-Locked Quantum Dash lasers by symmetric dual-loop optical feedback: effects of power ratio and optical phase tuning

Effects of Power Split Ratio and Optical Delay Phase Tuning on Stabilization of Self-Mode-Locked Quantum-Dash Lasers Subject to Dual-Loop Optical Feedback

Generation and stabilization of continuous wave THz emission from a bi-color VECSEL

Recent advances in stabilization of mode-locked quantum dash lasers at 1.55 µm by dual-loop optical feedback

John McInerney Information

University

Position

___

Citations(all)

5010

Citations(since 2020)

720

Cited By

6253

hIndex(all)

38

hIndex(since 2020)

14

i10Index(all)

98

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Top articles of John McInerney

Broadband 1.5 GHz VECSEL-Based Laser System for High Speed Multicontrast Nonlinear Imaging

IEEE Photonics Technology Letters

2023/3/31

Ameliorating the stability of erbium-doped fiber laser using saturable absorber fabricated by the pulsed laser deposition technique

Scientific Reports

2022/11/24

Control of Timing Stability, and Suppression in Delayed Feedback Induced Frequency-Fluctuations by Means of Power Split Ratio and Delay Phase-Dependent Dual-Loop Optical Feedback

Applied Sciences

2021/5

Stabilization of Self-Mode-Locked Quantum Dash lasers by symmetric dual-loop optical feedback: effects of power ratio and optical phase tuning

2020/5/10

Effects of Power Split Ratio and Optical Delay Phase Tuning on Stabilization of Self-Mode-Locked Quantum-Dash Lasers Subject to Dual-Loop Optical Feedback

IEEE Photonics Journal

2020/3/30

Generation and stabilization of continuous wave THz emission from a bi-color VECSEL

2020/3/2

Recent advances in stabilization of mode-locked quantum dash lasers at 1.55 µm by dual-loop optical feedback

Optics & Laser Technology

2020/2/1

See List of Professors in John McInerney University(University College Cork)