NEWS
Find a Professional: Explore Experts Across 197 Disciplines in 221 Countries!
Just Updated: Compare Your Institution (Live Data)
Print Your Certificate
New! Young University / Institution Rankings 2025
New! Art & Humanities Rankings 2025
New! Social Sciences and Humanities Rankings 2025
Highly Cited Researchers 2025 (Updated Today)
AD
Scientific Index 2025
Scientist Rankings
University Rankings
Subject Rankings
Country Rankings
Login
Register & Pricing
insights
H-Index Rankings
insights
i10 Productivity Rankings
format_list_numbered
Citation Rankings
subject
University Subject Rankings
school
Young Universities
format_list_numbered
Top 100 Scientists
format_quote
Top 100 Institutions
format_quote
For Students
local_fire_department
Country Reports
person
Find a Professional
Shimpei Shimizu
Nippon Telegraph and Telephone Corporation - Tokyo / Japan
Others
AD Scientific Index ID: 4625890
日本電信電話株式会社
Registration, Add Profile,
Premium Membership
Get Your Global Impact Certificate
Ranking &
Analysis
Job
Experiences
Education
Information
Published Books
Book Chapters
Articles
Presentations
Lessons
Projects
Co-Authors
Subject Leaders
Editorship, Referee &
Scientific Board
Patents /
Designs
Academic Grants
& Awards
Artistic
Activities
Certificate / Course
/ Trainings
Association &
Society Memberships
Contact, Office
& Social Media
person_outline
Shimpei Shimizu's MOST POPULAR ARTICLES
1-)
Wide-band inline-amplified WDM transmission using PPLN-based optical parametric amplifier Journal of Lightwave Technology 39 (3), 787-794, 2021
2-)
Over-30-dB gain and 1-dB noise figure phase-sensitive amplification using a pump-combiner-integrated fiber I/O PPLN module Optics Express 29 (18), 28824-28834, 2021
3-)
PPLN-based optical parametric amplification for wideband WDM transmission Journal of Lightwave Technology 40 (11), 3374-3384, 2022
4-)
S+ C+ L-Band WDM Transmission Using 400-Gb/s Real-Time Transceivers Extended by PPLN-Based Wavelength Converter European Conference and Exhibition on Optical Communication, We4D. 4, 2022
5-)
103-ch. 132-Gbaud PS-QAM Signal Inline-amplified Transmission with 14.1-THz Bandwidth Lumped PPLN-based OPAs over 400-km G. 652. D SMF 2023 Optical Fiber Communications Conference and Exhibition (OFC), 1-3, 2023
ARTICLES
Add your articles
We use cookies to personalize our website and offer you a better experience. If you accept cookies, we can offer you special services.
Cookie Policy
Accept