Author

Gaurav Khanna

University of Rhode Island & UMass Dartmouth - Cited by 3,713 - Physics - Gravitation - Black Holes - Supercomputing - Computation

Biography

Gaurav Khanna is affiliated to University of Cincinnati, Cincinnati, OH, USA. He is a recipient of many awards and grants for his valuable contributions and discoveries in major area of subject research. His international experience includes various programs, contributions and participation in different countries for diverse fields of study.  His research interests reflect in his wide range of publications in various national and international journals.  
Title
Cited by
Year
Eccentric binary black hole surrogate models for the gravitational waveform and remnant properties: Comparable mass, nonspinning case
T Islam, V Varma, J Lodman, SE Field, G Khanna, MA Scheel, HP Pfeiffer, ...Physical Review D 103 (6), 064022, 2021202
48
2021
Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency
SA Hughes, N Warburton, G Khanna, AJK Chua, ML KatzPhysical Review D 103 (10), 104014, 2021202
46
2021
Gravitational tuning forks and hierarchical triple systems
V Cardoso, F Duque, G KhannaPhysical Review D 103 (8), L081501, 2021202
22
2021
Impact of marketing communication and information sharing on the productivity of India’s small and medium-sized businesses (SMEs)
AK Yadava, IA Khan, P Pandey, M Aarif, G Khanna, S GargInternational journal of health sciences 6, 12745-12755, 2022202
18
2022
Scalar and gravitational hair for extreme Kerr black holes
LM Burko, G Khanna, S SabharwalPhysical Review D 103 (2), L021502, 2021202
16
2021
Genetic-algorithm-optimized neural networks for gravitational wave classification
DS Deighan, SE Field, CD Capano, G KhannaNeural Computing and Applications 33 (20), 13859-13883, 2021202
16
2021
12
2022
A GPU-accelerated mixed-precision WENO method for extremal black hole and gravitational wave physics computations
SE Field, S Gottlieb, ZJ Grant, LF Isherwood, G KhannaCommunications on Applied Mathematics and Computation 5 (1), 97-115, 2023202
10
2023
Measuring quasinormal mode amplitudes with misaligned binary black hole ringdowns
H Lim, SA Hughes, G KhannaPhysical Review D 105 (12), 124030, 2022202
6
2022
Divergences in gravitational-wave emission and absorption from extreme mass ratio binaries
E Barausse, E Berti, V Cardoso, SA Hughes, G KhannaPhysical Review D 10 (6), 06031, 2021202
4
2021
A rare case of isolated intraventricular primary central nervous system lymphoma in an 85-year-old man
G Khanna, S Ahlawat, N Garg, R Gupta, R PatirAsian Journal of Neurosurgery 16 (0), 62-625, 2021202
3
2021
18F-Labeled WBC PET/CT Scan in a Case of Recurrent Glioblastoma Multiforme, Presented as Pyrexia of Unknown Origin
8F-Labeled WBC PET/CT Scan in a Case of Recurrent Glioblastoma Multiforme, Presented as Pyrexia of Unknown OriginSS Das, D Malik, G Khanna, IB Sen, R PatirClinical Nuclear Medicine 47 (7), e500-e502, 2022202
1
2022
1
2022
Varied imaging and clinical presentations of acute bacterial cerebritis
S Sharma, J Saini, G Khanna, A Goyal, A Mahadevan, H Deora, RK GuptaEmergency Radiology 29 (4), 79-799, 2022202
1
2022
Survey of gravitational wave memory in intermediate mass ratio binaries
T Islam, SE Field, G Khanna, N WarburtonarXiv preprint arXiv:209.00754, 20220
1
2021
Discontinuous Galerkin method for linear wave equations involving derivatives of the Dirac delta distribution
SE Field, S Gottlieb, G Khanna, E McClainarXiv preprint arXiv:22.4390, 2022202
1
2022
Quantification of Radiomics features of peritumoral vasogenic edema extracted from FLAIR images in glioblastoma and isolated brain metastasis, using T1-DCE perfusion analysis.
Quantification of Radiomics features of peritumoral vasogenic edema extracted from FLAIR images in glioblastoma and isolated brain metastasis, using T-DCE perfusion analysis.S Parvaze, R Bhattacharjee, YK Verma, RK Singh, V Yadav, A Singh, ...NMR in Biomedicine, e4884-e4884, 2022202
1
2022
Interplay between numerical relativity and perturbation theory: finite size effects
T Islam, G KhannaarXiv preprint arXiv:2306.08767, 2023202
1
2023