Seguir
Nashra Pistawala
Nashra Pistawala
Ph.D student
Dirección de correo verificada de students.iiserpune.ac.in
Título
Citado por
Citado por
Año
Crystal growth of quantum materials: a review of selective materials and techniques
N Pistawala, D Rout, K Saurabh, R Bag, K Karmakar, L Harnagea, ...
Bulletin of Materials Science 45, 1-20, 2022
172022
Gate and Temperature Driven Phase Transitions in Few-Layer MoTe2
H Kowalczyk, J Biscaras, N Pistawala, L Harnagea, S Singh, A Shukla
ACS nano 17 (7), 6708-6718, 2023
62023
Probing electron–phonon coupling in magnetic van der Waals material NiPS3: A non-magnetic site-dilution study
N Pistawala, A Kumar, D Negi, D Rout, L Harnagea, S Saha, S Singh
2D Materials 11 (2), 025035, 2024
22024
Tuning the robust magnetic properties in ( = Mn, Fe, and Ni) by proximity-induced Dzyaloshinskii-Moriya interactions
S Paul, D Negi, S Talukdar, S Karak, S Badola, B Poojitha, M Mandal, ...
Physical Review B 109 (8), 085136, 2024
22024
Single Crystal Growth and Properties of 2D Antiferromagnet Ni1-xZnxPS3
N Pistawala, A Kumar, D Rout, L Harnagea, S Singh
New Physics: Sae Mulli 73 (12), 1140-1144, 2023
12023
Tuning the magnetic properties in MPS3 (M= Mn, Fe, and Ni) by proximity-induced Dzyaloshinskii Moriya interactions
S Paul, D Negi, S Talukdar, S Karak, S Badola, B Poojitha, M Mandal, ...
arXiv preprint arXiv:2307.13400, 2023
12023
A novel Gapless Quantum Spin Liquid in the S= 1 4d4-honeycomb material Cu3LiRu2O6
S Bachhar, N Pistawala, S Kundu, M Barik, M Baenitz, J Sichelschmidt, ...
arXiv preprint arXiv:2501.17248, 2025
2025
Magnetic excitation–phonon coupling in at high temperatures
D Negi, S Badola, S Paul, N Pistawala, L Harnagea, S Saha
Physical Review B 110 (9), 094434, 2024
2024
Anisotropic magnetic ground state of single-crystalline quasi-two-dimensional honeycomb antiferromagnet
N Pistawala, L Harnagea, S Ramakrishnan, P Tiwari, MP Saravanan, ...
Physical Review B 110 (10), 104421, 2024
2024
Atypical antiferromagnetic ordering in single crystalline quasi-2D honeycomb magnet YbI
N Pistawala, L Harnagea, S Ramakrishnan, P Tiwari, MP Saravanan, ...
arXiv preprint arXiv:2407.01982, 2024
2024
Crystal growth, magnetic and magnetocaloric properties of = 1/2 quantum antiferromagnet
N Pistawala, L Harnagea, S Karmakar, R Rawat, S Singh
Physical Review Materials 8 (7), 076201, 2024
2024
Possible QSL realisation in the honeycomb system Cu3LiRu2O6 with Ru4+ (4d4)
A Mahajan, S Bachhar, S Singh, N Pistawala, M Baenitz, J Sichelschmidt
Bulletin of the American Physical Society, 2024
2024
Magnetic excitation–phonon coupling in NiPS3 at high temperatures
S Paul, L HARNAGEA, S Saha, N PISTAWALA, S Badola, D Negi
American Physical Society, 2024
2024
Anisotropic magnetic ground state of single-crystalline quasi-two-dimensional honeycomb antiferromagnet YbI3
MP Saravanan, P Tiwari, S RAMAKRISHNAN, L HARNAGEA, ...
American Physical Society, 2024
2024
Crystal growth, magnetic and magnetocaloric properties of 𝐽eff= 1/2 quantum antiferromagnet CeCl3
S Karmakar, L HARNAGEA, N PISTAWALA, R Rawat, S SINGH
American Physical Society, 2024
2024
Probing electron-phonon coupling in magnetic van der Waals material NiPS3: a non-magnetic site-dilution study
D ROUT, L HARNAGEA, A KUMAR, S Saha, N PISTAWALA, D Negi, ...
IOP Publishing, 2024
2024
Tuning the robust magnetic properties in MPS3 (M= Mn, Fe, and Ni) by proximity-induced Dzyaloshinskii-Moriya interactions
N PISTAWALA, S Paul, L HARNAGEA
American Physical Society, 2024
2024
Evidence of Charge-Phonon coupling in Van der Waals materials Ni1-xZnxPS3
N Pistawala, A Kumar, D Negi, D Rout, L Harnagea, S Saha, S Singh
arXiv preprint arXiv:2307.12733, 2023
2023
Single Crystal Growth and Properties of 2D Antiferromagnet Ni1-xZnxPS3
D ROUT, L HARNAGEA, A KUMAR, N PISTAWALA, S SINGH
INFOrang Co., Ltd, 2023
2023
Gate and Temperature Driven Phase Transitions in Few-Layer MoTe2
L HARNAGEA, N PISTAWALA, H Kowalczyk, J Biscaras, A Shukla, ...
American Chemical Society, 2023
2023
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–20