Anup Kumar Sahoo
0000-0002-4781-5456
National Tsing Hua University
21 papers found
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WSe2/WS2 Heterobilayer Nonvolatile Memory Device with Boosted Charge Retention
WS2/WSe2 Nanodot Composite Photodetectors for Fast and Sensitive Light Detection
Influence of Oxygen Flow Rate on Channel Width Dependent Electrical Properties of Indium Gallium Zinc Oxide Thin-Film Transistors
Studies of Terahertz Radiation from Optically excited Indium Tin Oxide / Semi Insulating Gallium Arsenide Interface
THz Spectroscopy as Non-destructive Alternative to Secondary Ion Mass Spectroscopy
Enhancement of Indium Tin Oxide Nano-Scale Films for Terahertz Device Applications Treated by Rapid Thermal Annealing
Data Restoring Method Using Compressed Sensing and Computer Program Product
Liquid crystal photoelectric apparatus and manufacturing method of liquid crystal photoelectric apparatus
Liquid crystal photoelectric apparatus and optical imaging processing system
Tail-Suppressed THz Photocurrent by a Bi-Polar Photoconductive Antenna Fabricated on Semi-insulating GaAs
Twisted Nematic Liquid Crystal Based Terahertz Phase Shifter With Crossed Indium Tin Oxide Finger Type Electrodes
Twisted Nematic Liquid-Crystal-Based Terahertz Phase Shifter using Pristine PEDOT: PSS Transparent Conducting Electrodes
A Comparative Study of E-Beam Deposited Gate Dielectrics on Channel Width-Dependent Performance and Reliability of a-IGZO Thin-Film Transistors
Liquid Crystal Based Terahertz Phase Shifter with Bi-Layer Structure
Liquid Crystal Based Terahertz Spatial Light Modulator for Imaging Application
Effects of e-beam deposited gate dielectric layers with atmospheric pressure plasma treatment for IGZO thin-film transistors
Effects of argon flow rate on electrical properties of amorphous indium gallium zinc oxide thin-film transistors
Influence of RF power on performance of sputtered a-IGZO based liquid crystal cells
RF sputtering deposited a-IGZO films for LCD alignment layer application
Improved Amorphous Indium Gallium Zinc Oxide Thin Film Transistors by Low Power RF-Sputtering Deposition Using Ta2O5 Dielectric
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