Photonic Crystal and Its Applications for Next Generation Systems
(Sprache: Englisch)
This book covers the advanced fabrication techniques, challenges, and applications of photonic crystals for next-generation systems in various applications such as high-speed networks, photonic integrated circuits, health care, sensors, energy, and...
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This book covers the advanced fabrication techniques, challenges, and applications of photonic crystals for next-generation systems in various applications such as high-speed networks, photonic integrated circuits, health care, sensors, energy, and environmental. This book highlights the literature and works put forward by various scientists, researchers, and academicians in photonic crystals and their real-time applications. The content of the book appeals to readers such as students, researchers, and industrial engineers who are working in the design and development of photonics-based concepts, components, and devices for various applications.Inhaltsverzeichnis zu „Photonic Crystal and Its Applications for Next Generation Systems “
Chapter 1. Hot atomic vapour for photonic crystal based optical components.- Chapter 2. Highly efficient graphene-based optical components for networking applications.- Chapter 3. A Nonlinear Optical Benzil Single Crystal for Photonic applications.- Chapter 4. Highly efficient materials for photonic crystal-based optical components.- Chapter 5. Fabrication of Unidirectional Grown 1, 3, 5-Triphenylbenzene Single Crystal for Nonlinear Optical and Fast Neutron Detector Applications.- Chapter 6. Two-dimensional Photonic Crystal-based Filters Review.- Chapter 7. Photonic crystal based 2D demultiplexer for DWDM systems.- Chapter 8. Investigation of Ultra-Small Efficient Encoders and Decoders for High-Speed Optical Communication Systems.- Chapter 9. Photonic Crystal Fibers for Sensing Applications.- Chapter 10. Photonic Crystal biosensors for health care and pathologic diagnostic application.- Chapter 11. High frequency Photonic Crystal based Terahertz Antenna for Medical Applications.- Chapter 12. Role of photonics in energy crisis.Autoren-Porträt
Dr. Shanmuga Sundar Dhanabalan is an accomplished researcher with a proventrack record in designing, developing, and translating micro- and nano-scale devices.
His primary objective is to create next-generation products that enhance quality of
life and well-being, making a significant contribution to society. He currently leading
a team 'wearable and connected sensors' at RMIT University, with a focus on mate-
rials, exible and stretchable devices, wearables, optics, and photonics. He graduated
with a PhD in exible electronics in June 2017 and secured a competitive postdoctoral
fellowship from the Chilean government from 2018 to 2021. His studies have led to
publications in referred international journals, book chapters, and books in progress
as editor. He has presented plenary/keynote, invited talks and guest lectures, oral
and poster presentations at scientific meeting at various universities world-wide.
Several outcomes have been highlighted by scientific websites (such as Photonics
Media, USA). His research work has led to securing grants from Australian govern-
ment research schemes, such as the Cooperative Research Centres Projects, the ARC
Research Hub for Connected Sensors for Health, Victorian Medical Research Accel-
eration Fund, and the Advanced Manufacturing Growth Centre's CommercialisationFund. He has collaborations with universities from various countries, including India,
Australia, Chile, Mexico, and Bangladesh. He has served as a reviewer for over 20
prestigious specialist journals. He also served as a topical editor for highly reputed
journals including IEEE Transactions on Industrial Informatics, IEEE Instrumenta-
tion and Measurement Magazine, IEEE, Energies, Computer and Electrical Engi-
neering. He is a part of the Editorial Board of American Journal of
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Optics and
Photonics. In addition, he served as a session chair and technical committee member
in various international conferences.
Dr. Arun Thirumurugan is a Academic Faculty at the University of ATACAMA
working on the development of magnetic nanocomposite for energy storage and
biological applications. He has completed his Ph.D. (2010-2015) at the NationalInstitute of Technology (NIT), Tiruchirappalli, India. He has worked as a post-
doctoral fellow (2015-2017) at the Institute of Physics, Bhubaneswar, India, and
then worked as a FONDECYT postdoctoral fellow (2017-2020) at the University of
Chile, Santiago, Chile. His research interests are synthesizing magnetic nanoparti-
cles, surface modification of nanomaterials for the potential applications in detox-
ification, photocatalyst, energy storage, and biomedical applications. Dr. Thirumu-
rugan acts as a reviewer for various journals from different eminent publishers. He is
editing a topical issue on magnetic nanomaterials and carbonaceous nanocomposites
in the Frontiers publishing group. He edited two books. He published more than 90
international journals, book chapters, and conference proceedings.
Dr. Ramesh Raju is a staff scientist at Aalto University. His research focuses on
III-V materials growth and fabrication for optoelectronics applications and 2D mate-
rials growth and fabrication for photonics applications. During his Ph.D. at Anna
University, Chennai, India, his research focused on III-Nitride materials growth
by metal organic vapour phase epitaxy (MOVPE) for optoelectronics applications.
After obtaining his Ph.D. degree, he moved to China, where he worked as a post-doctoral researcher at the Nanophotonics Laboratory, College of Physics, Hunan
University (HNU), China. At HNU, he designed the growth setup for 2D material-
based heterostructure for photonics applications. Since he is experience
Photonics. In addition, he served as a session chair and technical committee member
in various international conferences.
Dr. Arun Thirumurugan is a Academic Faculty at the University of ATACAMA
working on the development of magnetic nanocomposite for energy storage and
biological applications. He has completed his Ph.D. (2010-2015) at the NationalInstitute of Technology (NIT), Tiruchirappalli, India. He has worked as a post-
doctoral fellow (2015-2017) at the Institute of Physics, Bhubaneswar, India, and
then worked as a FONDECYT postdoctoral fellow (2017-2020) at the University of
Chile, Santiago, Chile. His research interests are synthesizing magnetic nanoparti-
cles, surface modification of nanomaterials for the potential applications in detox-
ification, photocatalyst, energy storage, and biomedical applications. Dr. Thirumu-
rugan acts as a reviewer for various journals from different eminent publishers. He is
editing a topical issue on magnetic nanomaterials and carbonaceous nanocomposites
in the Frontiers publishing group. He edited two books. He published more than 90
international journals, book chapters, and conference proceedings.
Dr. Ramesh Raju is a staff scientist at Aalto University. His research focuses on
III-V materials growth and fabrication for optoelectronics applications and 2D mate-
rials growth and fabrication for photonics applications. During his Ph.D. at Anna
University, Chennai, India, his research focused on III-Nitride materials growth
by metal organic vapour phase epitaxy (MOVPE) for optoelectronics applications.
After obtaining his Ph.D. degree, he moved to China, where he worked as a post-doctoral researcher at the Nanophotonics Laboratory, College of Physics, Hunan
University (HNU), China. At HNU, he designed the growth setup for 2D material-
based heterostructure for photonics applications. Since he is experience
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Bibliographische Angaben
- 2023, 1st ed. 2023, XIII, 222 Seiten, 98 farbige Abbildungen, Maße: 15,5 x 23,5 cm, Gebunden, Englisch
- Herausgegeben: Shanmuga Sundar Dhanabalan, Arun Thirumurugan, Ramesh Raju, Sathish-Kumar Kamaraj, Sridarshini Thirumaran
- Verlag: Springer, Berlin
- ISBN-10: 9819925479
- ISBN-13: 9789819925476
Sprache:
Englisch
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