Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Amogh A. Dyavangoudar"'
Autor:
Amogh A. Dyavangoudar, Mayur Kumar Chhipa, Ankur Saharia, Yaseera Ismail, Francesco Petruccione, Anton V. Bourdine, Oleg G. Morozov, Vladimir V. Demidov, Juan Yin, Ghanshyam Singh, Manish Tiwari
Publikováno v:
IEEE Access, Vol 11, Pp 56891-56899 (2023)
This manuscript presents a ring-core Bragg Fiber (RC-BF) for orbital angular momentum (OAM) modes propagation and supercontinuum generation. The proposed RC-BF is composed of alternating layers of soft glasses SF57 and LLF1 to render high nonlinearit
Externí odkaz:
https://doaj.org/article/dd406362da074e558d32117eaca03cad
Autor:
Anton V. Bourdine, Vladimir V. Demidov, Egishe V. Ter-Nersesyants, Grigori A. Pchelkin, Dmitriy N. Shurupov, Alexander V. Khokhlov, Alexandra S. Matrosova, Andrey I. Kashin, Sergei V. Bureev, Michael V. Dashkov, Alexander S. Evtushenko, Elena S. Zaitseva, Azat R. Gizatulin, Ivan K. Meshkov, Amogh A. Dyavangoudar, Ankur Saharia, Manish Tiwari, Alexander A. Vasilets, Vasiliy S. Elagin, Ghanshyam Singh, Konstantin V. Dukelskii
Publikováno v:
Photonics, Vol 10, Iss 7, p 846 (2023)
This work presents the first instance of a silica few-mode microstructured optical fiber (MOF) being successfully fabricated with a hollow GeO2-doped ring core and by strongly inducing twisting up to 790 revolutions per meter. Some technological issu
Externí odkaz:
https://doaj.org/article/c34ed052ee9b42f39ff03291d947066f
Autor:
Tanvi Sharma, Shweta Mittal, Piyush Shrivastava, Amogh A Dyavangoudar, Sushma Punia, Ankur Saharia, Manish Tiwari
Publikováno v:
2022 4th Novel Intelligent and Leading Emerging Sciences Conference (NILES).
Autor:
Piyush Shrivastava, Sushma Punia, Shweta Mittal, Ankur Saharia, Tanvi Sharma, Amogh A Dyavangoudar, Manish Tiwari
Publikováno v:
2022 8th International Conference on Advanced Computing and Communication Systems (ICACCS).
Autor:
Amogh A Dyavangoudar, Sushma Punia, Anton V. Bourdine, Yaseera Ismail, Ghanshyam Singh, Ankur Saharia, Manish Tiwari
Publikováno v:
Frontiers in Optics + Laser Science 2022 (FIO, LS).
This work presents a unique snowflake-shaped Photonic Crystal Fiber (PCF) for the propagation of OAM modes. The designed PCF theoretically demonstrated the propagation of 10 OAM modes at the specified wavelength of 1.55µm.