Follow
Dr. Lokendra Singh
Dr. Lokendra Singh
Assistant Professor, Graphic Era (Deemed to be University)
Verified email at geu.ac.in
Title
Cited by
Cited by
Year
LSPR based uric acid sensor using graphene oxide and gold nanoparticles functionalized tapered fiber
L Singh, R Singh, B Zhang, S Cheng, BK Kaushik, S Kumar
Optical Fiber Technology 53, 102043, 2019
832019
Highly sensitive and selective sensor probe using glucose oxidase/gold nanoparticles/graphene oxide functionalized tapered optical fiber structure for detection of glucose
Q Yang, G Zhu, L Singh, Y Wang, R Singh, B Zhang, X Zhang, S Kumar
Optik 208, 164536, 2020
762020
Gold nanoparticles and uricase functionalized tapered fiber sensor for uric acid detection
L Singh, G Zhu, R Singh, B Zhang, W Wang, BK Kaushik, S Kumar
IEEE Sensors Journal 20 (1), 219-226, 2019
752019
Localized surface plasmon resonance based hetero-core optical fiber sensor structure for the detection of L-cysteine
L Singh, R Singh, B Zhang, BK Kaushik, S Kumar
IEEE Transactions on Nanotechnology 19, 201-208, 2020
612020
Detection of collagen-IV using highly reflective metal nanoparticles—Immobilized photosensitive optical fiber-based MZI structure
BK Kaushik, L Singh, R Singh, G Zhu, B Zhang, Q Wang, S Kumar
IEEE Transactions on NanoBioscience 19 (3), 477-484, 2020
582020
Design of one bit magnitude comparator using nonlinear plasmonic waveguide
Santosh Kumar, Lokendra Singh Sandip Swarnakar
Plamonics 11, 1-7, 2016
52*2016
Design of all-optical universal gates using plasmonics Mach-Zehnder interferometer for WDM applications
S Kumar, L Singh, NK Chen
Plasmonics 13, 1277-1286, 2018
492018
Tapered optical fiber-based LSPR biosensor for ascorbic acid detection
G Zhu, L Singh, Y Wang, R Singh, B Zhang, F Liu, BK Kaushik, S Kumar
Photonic Sensors 11, 418-434, 2021
442021
Design of plasmonics half adder and subtractor circuits employing nonlinear effect in Mach-Zehnder interferometer
LSSKR Santosh Kumar
J Comput Electron 15, 1-9, 2016
37*2016
Development of collagen-IV sensor using optical fiber-based Mach-Zehnder interferometer structure
L Singh, R Singh, S Kumar, B Zhang, BK Kaushik
IEEE Journal of Quantum Electronics 56 (4), 1-8, 2020
342020
Graphene-based frequency agile isolation enhancement mechanism for MIMO antenna in terahertz regime
NK Maurya, S Kumari, P Pareek, L Singh
Nano Communication Networks 35, 100436, 2023
272023
All-optical bit magnitude comparator device using metal–insulator–metal plasmonic waveguide
S Kumar, L Singh, NK Chen
Optical Engineering 56 (12), 121908-121908, 2017
212017
Design of full-adder and full-subtractor using metal-insulator-metal plasmonic waveguides
S Kumar, L Singh, SK Raghuwanshi, NK Chen
Plasmonics 12, 987-997, 2017
182017
Recent advancements in plasmonic optical biosensors: a review
N Agrawal, R Saxena, L Singh, C Saha, S Kumar
ISSS Journal of Micro and Smart Systems, 1-12, 2022
132022
Numerical simulation of all-optical logic functions at micrometer scale by using plasmonic Metal-Insulator-Metal (MIM) waveguides
PP Lokendra Singh, G. Zhu, G. M. Kumar, D. Revathi
Optics and Laser Technology 135, 106697, 2021
132021
A microscale numerical analysis of Ex-OR and Ex-NOR logic gates by using single plasmonic MZI
L Singh, P Pareek, GM Kumar, D Revathi
Plasmonics 16, 1127-1136, 2021
122021
Modeling of all-optical even and odd parity generator circuits using metal-insulator-metal plasmonic waveguides
L Singh, A Bedi, S Kumar
Photonic Sensors 7, 182-192, 2017
122017
A plus shaped cavity in optical fiber based refractive index sensor
L Singh, N Agrawal, C Saha, BK Kaushik
IEEE Transactions on NanoBioscience 21 (2), 199-205, 2021
112021
A compact formulation of all optical signal router by using plasmonic waveguides
L Singh, A Iadicicco, N Agrawal, C Saha, R Chauhan
Optical and Quantum Electronics 54 (8), 478, 2022
92022
Numerical investigation of all optical SR flip-flop using plasmonic metal–insulator-metal (MIM) waveguides
L Singh, N Agrawal, KK Gola, C Saha, P Pareek
Optical and Quantum Electronics 54 (6), 381, 2022
82022
The system can't perform the operation now. Try again later.
Articles 1–20