Dr. KM Rakhi | Physics | Best Researcher Award
Indian Institute of Technology Ropar, India
Professional Profiles:
👨🎓 Bio Summary:
Dr. KM Rakhi is a Senior Research Fellow in the Department of Physics at the Indian Institute of Technology (IIT) Ropar. Specializing in Experimental Condensed Matter Physics, her research explores ion-solid interactions and nanoscale pattern formation through innovative experimental techniques. Her contributions to surface nanostructuring have the potential for significant applications in semiconductor devices and surface engineering. Dr. Rakhi is recognized for her novel approaches to surface morphology control and her ability to contribute to both theoretical and applied aspects of physics.
🎓 Educational Background:
Dr. Rakhi completed her Ph.D. in Physics from IIT Ropar in 2024, where her thesis focused on ion beam nanopatterning beyond conventional geometries under the supervision of Dr. Subhendu Sarkar. She earned her Master of Science in Physics in 2015 from D.A.V. College, Muzaffarnagar, affiliated with CCS University, Meerut, with a CGPA of 72.3%. Prior to this, she completed her Bachelor of Science from the same institution in 2013 with a score of 76.7%.
🔍 Research Focus:
Her primary research interest lies in the field of ion-induced modifications and nanostructuring of solid surfaces, with a focus on the dynamics of pattern formation and evolution on various materials such as semiconductors, metals, and polymers. She investigates nanoscale pattern formation using low-energy ion beam techniques and explores surface engineering applications for future technologies. Dr. Rakhi’s work has resulted in uncovering new pattern formation scenarios that have implications for both fundamental research and practical applications.
🏆 Honors & Awards:
While Dr. Rakhi has yet to receive formal individual awards, her impactful research has led to several high-profile publications in renowned journals. Her work has been acknowledged through her participation in various prestigious conferences, where she has presented her research to the broader scientific community.
💼 Professional Experience:
Dr. Rakhi has accumulated significant expertise through her work as a Senior Research Fellow at IIT Ropar. Her hands-on experience with high-vacuum systems, physical vapor deposition techniques like RF and DC magnetron sputtering, and material characterization methods such as Atomic Force Microscopy (AFM) and Scanning Electron Microscopy (SEM) has made her adept in experimental investigations. Her collaborative projects, particularly those involving ion-beam-induced surface engineering, underscore her proficiency in advanced research techniques.
📚 Top Noted Publications :
Surface Nanopatterning of Amorphous Gallium Oxide Thin Film for Enhanced Solar-Blind Photodetection
D. Kaur, P. Vashishtha, G. Gupta, S. Sarkar, M. Kumar
Nanotechnology, 33(37), 375302, 14 citations, 2022
Abrupt Pattern Transitions in Argon Ion Bombarded Swinging Si Substrates
K.M. Rakhi, S. Sarkar
Physical Review B, 106(24), 245420, 4 citations, 2022
Towards Ordered Si Surface Nanostructuring: Role of an Intermittent Ion Beam Irradiation Approach
J. Muñoz-García, R. Cuerno, K.M. Rakhi, S. Sarkar
Physica Scripta, 98(5), 055902, 2 citations, 2023
Impact of Intermittent Sputtering on the Ordering of Triangular Surface Topography
K.M. Rakhi, S. Sarkar
Nuclear Instruments and Methods in Physics Research Section B: Beam, 2024 (In press)
Prolonged Pattern Coarsening in Ion Irradiated Swinging Si Substrates
K.M. Rakhi, S. Sarkar
Vacuum, 225, 113210, 2024 (In press)
Conclusion:
KM Rakhi’s innovative research in nanostructuring and surface engineering positions her as a strong contender for a Best Researcher Award. Her deep technical expertise, consistent publication record, and cutting-edge research contribute significantly to the field of experimental physics. By expanding her global outreach and exploring industry applications, she could further solidify her standing as a leading researcher. With her trajectory of impactful research and innovation, she is well-qualified for this award, provided she continues to advance her interdisciplinary collaborations and research dissemination strategies.