T. A. Railkar
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Also affiliated: Skyworks Solutions (United States) (2003); Savitribai Phule Pune University (1992–1999)
Formerly Arkansas Affiliated with University of Arkansas through 2003.
Research Areas
Biography and Research Information
OverviewAI-generated summary
T. A. Railkar's research has focused on the interaction of materials with various forms of energy and radiation, particularly lasers and ion beams. His work includes the study of femtosecond laser-induced periodic structure writing on diamond crystals and microclusters, as well as the processing of materials such as Teflon (PTFE) and polyimide using femtosecond ultraviolet excimer lasers. Railkar has also investigated the characteristics of porous silicon dependent on crystallite size and studied surface states in n-GaAs using exoelectron emission measurements. Additionally, his research has involved surface modification of n-GaAs by silicon ions and defect studies in silicon-based metal-insulator-semiconductor structures irradiated by oxygen ions.
With a career marked by diverse investigations into material properties and modifications, Railkar has contributed to the understanding of semiconductor and polymer behavior under energetic conditions. His h-index is 8, with a total of 19 publications and 389 citations, indicating ongoing engagement and impact in his research areas. He remains an active researcher.
Metrics
- h-index: 8
- Publications: 19
- Citations: 389
Selected Publications
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Chemical modifications in femtosecond ultraviolet (248 nm) excimer laser radiation-processed polyimide (2003)
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Femtosecond ultraviolet (248 nm) excimer laser processing of Teflon (PTFE) (2003)
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Feasibility study of thermally integrated mechanical configuration for a novel 3-D flex MCM (2002)
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Thermal management issues and evaluation of a novel, flexible substrate, 3-dimensional (3-D) packaging concept (2002)
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Femtosecond Excimer (248 NM) Laser Micro-Machining of Teflon (PTFE) (2001)
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Ultrashort pulse ultraviolet laser treatment of n(100) GaAs: Microstructural modifications and passivation effects (2001)
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Femtosecond Pulsed Laser-Induced Micromachining of Difficult-to-Machine Materials: Diamond a Case Study (2000)
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A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications (2000)
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Advanced processing of n (100) GaAs with femtosecond laser treatment (1999)
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Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters (1999)
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Investigation of Electronic Surface States and its Correlation to Surface Modifications in Femtosecond UV-Laser Treated n(100) GaAs (1999)
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Femtosecond Lasers for Advanced Machining of Ceramics and Composites (1998)
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Pulsed Femtosecond Excimer Laser-Induced Chemically Clean Etching of Diamond (1998)
Collaboration Network
Top Collaborators
- Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- Femtosecond ultraviolet (248 nm) excimer laser processing of Teflon (PTFE)
- Chemical modifications in femtosecond ultraviolet (248 nm) excimer laser radiation-processed polyimide
- Ultrashort pulse ultraviolet laser treatment of n(100) GaAs: Microstructural modifications and passivation effects
Showing 5 of 13 shared publications
- Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- Femtosecond ultraviolet (248 nm) excimer laser processing of Teflon (PTFE)
- Chemical modifications in femtosecond ultraviolet (248 nm) excimer laser radiation-processed polyimide
- Ultrashort pulse ultraviolet laser treatment of n(100) GaAs: Microstructural modifications and passivation effects
Showing 5 of 12 shared publications
- Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters
- Pulsed Femtosecond Excimer Laser-Induced Chemically Clean Etching of Diamond
- Femtosecond Pulsed Laser-Induced Micromachining of Difficult-to-Machine Materials: Diamond a Case Study
- Femtosecond Lasers for Advanced Machining of Ceramics and Composites
- Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters
- Pulsed Femtosecond Excimer Laser-Induced Chemically Clean Etching of Diamond
- Femtosecond Pulsed Laser-Induced Micromachining of Difficult-to-Machine Materials: Diamond a Case Study
- Femtosecond Lasers for Advanced Machining of Ceramics and Composites
- Femtosecond ultraviolet (248 nm) excimer laser processing of Teflon (PTFE)
- Chemical modifications in femtosecond ultraviolet (248 nm) excimer laser radiation-processed polyimide
- Femtosecond Pulsed Laser-Induced Micromachining of Difficult-to-Machine Materials: Diamond a Case Study
- Femtosecond Excimer (248 NM) Laser Micro-Machining of Teflon (PTFE)
- Ultrashort pulse ultraviolet laser treatment of n(100) GaAs: Microstructural modifications and passivation effects
- Investigation of Electronic Surface States and its Correlation to Surface Modifications in Femtosecond UV-Laser Treated n(100) GaAs
- Advanced processing of n (100) GaAs with femtosecond laser treatment
- Ultrashort pulse ultraviolet laser treatment of n(100) GaAs: Microstructural modifications and passivation effects
- Investigation of Electronic Surface States and its Correlation to Surface Modifications in Femtosecond UV-Laser Treated n(100) GaAs
- Advanced processing of n (100) GaAs with femtosecond laser treatment
- Femtosecond ultraviolet (248 nm) excimer laser processing of Teflon (PTFE)
- Chemical modifications in femtosecond ultraviolet (248 nm) excimer laser radiation-processed polyimide
- Femtosecond Excimer (248 NM) Laser Micro-Machining of Teflon (PTFE)
- Thermal management issues and evaluation of a novel, flexible substrate, 3-dimensional (3-D) packaging concept
- Feasibility study of thermally integrated mechanical configuration for a novel 3-D flex MCM
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- A Critical Review of Chemical Vapor-Deposited (CVD) Diamond for Electronic Applications
- Femtosecond laser-induced periodic structure writing on diamond crystals and microclusters
- Thermal management issues and evaluation of a novel, flexible substrate, 3-dimensional (3-D) packaging concept
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