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Publications

Found 808 results
Author [ Title(Asc)] Type Year
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H
B. Jayaraman and Bhat, N. , High Precision 16-bit Readout Gas Sensor Interface in 0.13 #x003BC;m CMOS, in 2007 IEEE International Symposium on Circuits and Systems, 2007, pp. 3071-3074.
S. Arun and Supradeepa, V. R. , High power fiber lasers in the SWIR band using Raman lasers, CSI transactions on ICT, vol. 5, pp. 143–148, 2017.
V. R. Supradeepa, Nicholson, J. W. , Headley, C. E. , Yan, M. F. , Palsdottir, B. , and Jakobsen, D. , A high efficiency architecture for cascaded Raman fiber lasers, Optics Express, vol. 21, no. 6, pp. 7148-7155, 2013.
K. Majumdar, Bhat, N. , Mhaji, P. , and Jammy, R. , HFinFET: A Scalable, High Performance, Low Leakage Hybrid N-Channel FET, IEEE Transactions on Nanotechnology, 2010.
A. Ghosh, Dasgupta, D. , Pal, M. , Morozov, K. I. , Leshansky, A. M. , and Ghosh, A. , Helical Nanomachines as Mobile Viscometers, Advanced Functional Materials, 2018.
M. Pal, Dasgupta, D. , Somalwar, N. , Reshma, V. R. , Tiwari, M. , Teja, D. , Narayana, S. M. , Katke, A. , Jayshree, R. S. , Bhat, R. , and , , Helical nanobots as mechanical probes of intra-and extracellular environments, Journal of Physics: Condensed Matter, vol. 32, p. 224001, 2020.
G
A. Nanda, Singh, V. , Jha, R. Kumar, Sinha, J. , Avasthi, S. , and Bhat, N. , Growth-Temperature Dependent Unpassivated Oxygen Bonds Determine the Gas Sensing Abilities of Chemical Vapor Deposition-Grown CuO Thin Films, ACS Applied Materials & Interfaces, vol. 13, pp. 21936–21943, 2021.
A. Kalra, Rathkanthiwar, S. , Remesh, N. , Muralidharan, R. , Nath, D. , and Raghavan, S. , Growth-Microstructure-Device Performance Correlations for III-nitride Optoelectronic and Power Devices on Sapphire and Silicon, in 2020 4th IEEE Electron Devices Technology & Manufacturing Conference (EDTM), 2020.
K. V. L. V. Narayanachari, Chandrasekar, H. , Banerjee, A. , Varma, K. B. R. , Ranjan, R. , Bhat, N. , and Raghavan, S. , Growth stress induced tunability of dielectric permittivity in thin films, Journal of Applied Physics, vol. 119, p. 014106, 2016.
R. Vasireddi, Javvaji, B. , Vardhan, H. , Mahapatra, D. R. , and Hegde, G. M. , Growth of zinc oxide nanorod structures: pressure controlled hydrothermal process and growth mechanism, Journal of Materials Science, vol. 52, pp. 2007–2020, 2017.
S. Rathkanthiwar, Kalra, A. , Muralidharan, R. , Nath, D. N. , and Raghavan, S. , Growth of AlN on sapphire: Predicting the optimal nucleation density by surface kinetics modeling, Journal of Applied Physics, vol. 127, p. 205301, 2020.
D. N. Nath, Gur, E. , Ringel, S. A. , and Rajan, S. , Growth Model for Plasma-assisted Molecular Beam Epitaxy of N-polar and Ga-polar InxGa1-xN, Journal of Vacuum Science and Technology B, vol. 29, p. 021206, 2011.
J. S. Mohan and Pratap, R. , A Group Theoretic Approach to the Linear Free Vibration Analysis of Shells with Dihedral Symmetry, Journal of Sound and Vibration, vol. 252, 2002.
G. Roelkens, Vermeulen, D. , Selvaraja, S. K. , Halir, R. , Bogaerts, W. , and Van Thourhout, D. , Grating based optical fiber interfaces for silicon-on-insulator photonic integrated circuits, 2011.
G. Roelkens, Vermeulen, D. , Selvaraja, S. K. , Halir, R. , Bogaerts, W. , and Van Thourhout, D. , Grating based optical fiber interfaces for silicon-on-insulator photonic integrated circuits, IEEE Journal of Selected Topics in Quantum Electronics, 2011.
D. Paria, Jeong, H. - H. , Vadakkumbatt, V. , Deshpande, P. , Fischer, P. , Ghosh, A. , and Ghosh, A. , Graphene–silver hybrid devices for sensitive photodetection in the ultraviolet, Nanoscale, vol. 10, pp. 7685–7693, 2018.
S. Kumar, Kaushik, S. , Pratap, R. , and Raghavan, S. , Graphene on Paper: A simple, low-cost chemical sensing platform, ACS Applied Materials & Interfaces, vol. 7, pp. 2189-2194, 2015.
S. Kumar, Kaushik, S. , Pratap, R. , and Raghavan, S. , Graphene on paper: A simple, low-cost chemical sensing platform, ACS applied materials & interfaces, vol. 7, pp. 2189–2194, 2015.
S. Kumar, Duesberg, G. S. , Pratap, R. , and Raghavan, S. , Graphene Field Emission Devices, Applied Physics Letters, vol. 105, pp. 103-107, 2014.
P. R. Yasasvi Gangavarapu, Lokesh, P. C. , Bhat, K. N. , and Naik, A. K. , Graphene Electrodes as Barrier-Free Contacts for Carbon Nanotube Field-Effect Transistors, IEEE Transactions on Electron Devices, vol. 64, pp. 4335–4339, 2017.
A. Gupta, Sakhuja, N. , Jha, R. , and Bhat, N. , Giant Humidity Responsiveness of Platinum Functionalized WS 2 Nanosheet Based Chemiresistors, in 2020 IEEE Sensors, 2020.
R. Wu, Supradeepa, V. R. , Long, C. M. , Leaird, D. E. , and Weiner, A. M. , Generation of very flat optical frequency combs from continuous wave lasers using cascaded intensity and phase modulators driven by tailored radio frequency waveforms, Optics Letters, vol. 35, no. 19, pp. 3234–3236, 2010.
K. P. Nagarjun, Jeyaselvan, V. , Selvaraja, S. Kumar, and Supradeepa, V. R. , Generation of tunable, high repetition rate optical frequency combs using on-chip silicon modulators, Optics express, vol. 26, pp. 10744–10753, 2018.
S. Clemmen, Perret, A. , Selvaraja, S. K. , Bogaerts, W. , Van Thourhout, D. , Baets, R. , Emplit, P. , and Massar, S. , Generation of correlated photons in hydrogenated amorphous silicon waveguides, Optics letters, vol. 35, pp. 3483–3485, 2010.
B. S. Vikram, Prakash, R. , Nagarjun, K. P. , Singh, A. , Selvaraja, S. Kumar, and Supradeepa, V. R. , Generation of a multi-wavelength source spanning the entire C-band by nonlinear spectral broadening of dual-carrier electro-optic frequency combs, OSA Continuum, vol. 3, pp. 2185–2194, 2020.

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