Temperature-insensitive fiber-optic devices using multimode interference effect. 2012

Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
Centre de Recherche en Photonique, Université du Québec en Outaouais, Gatineau (Québec) J8Y 3G5, Canada. tripathi.iit@gmail.com

We show theoretically that the fiber-optic devices using single-multi-single mode fiber structures can be made temperature insensitive by properly adjusting the concentration of P(2)O(5) in the core region of the multimode fiber used. Taking an example of a parabolic index multimode fiber, we obtain the temperature-insensitive transmission spectrum and fiber-optic lens action for a core composition of 1.57 mol. % P(2)O(5) and 13.5 mol. % GeO(2) in the SiO(2) host.

UI MeSH Term Description Entries

Related Publications

Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
July 2007, Optics letters,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
March 2021, Sensors (Basel, Switzerland),
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
August 2014, Applied optics,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
November 2007, Optics letters,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
August 2014, Applied optics,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
November 1992, Optics letters,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
November 2013, Optics letters,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
June 2012, Applied optics,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
December 2004, Applied optics,
Saurabh Mani Tripathi, and Arun Kumar, and Manoj Kumar, and Wojtek J Bock
May 2019, Applied optics,
Copied contents to your clipboard!