Zobrazeno 1 - 10
of 96
pro vyhledávání: '"Mandal Manasi"'
Publikováno v:
Discussiones Mathematicae - General Algebra and Applications, Vol 42, Iss 1, Pp 121-134 (2022)
The structure space of a semigroup endowed with hull kernel topology is introduced and studied. Also the structure space of a Г -semigroup is defined and a homeomorphism has been established between structure space of a Г -semigroup and the structu
Externí odkaz:
https://doaj.org/article/ee904b2160c7470fbcdc5023c724ab75
Autor:
Mandal, Manasi, Kataria, A., Meena, P. K., Kushwaha, R. K., Singh, D., Biswas, P. K., Stewart, R., Hillier, A. D., Singh, R. P.
We investigated the Re-based kagome superconductor Re$_2$Zr through various measurements, including resistivity, magnetization, specific heat, and muon spin rotation and relaxation spectroscopy. These results suggest that Re$_2$Zr is a moderately cou
Externí odkaz:
http://arxiv.org/abs/2409.10941
Autor:
Drucker, Nathan, Nguyen, Thanh, Mandal, Manasi, Siriviboon, Phum, Quan, Yujie, Boonkird, Artittaya, Okabe, Ryotaro, Li, Fankang, Buragge, Kaleb, Funuma, Fumiaki, Matsuda, Masaaki, Abernathy, Douglas, Williams, Travis, Chi, Songxue, Ye, Feng, Nelson, Christie, Liao, Bolin, Volkov, Pavel, Li, Mingda
Engineering new quantum phases requires fine tuning of the electronic, orbital, spin, and lattice degrees of freedom. To this end, the kagome lattice with flat bands has garnered great attention by hosting various topological and correlated phases, w
Externí odkaz:
http://arxiv.org/abs/2401.17141
Autor:
Mandal, Manasi, Chotrattanapituk, Abhijatmedhi, Woller, Kevin, Xu, Haowei, Mao, Nannan, Okabe, Ryotaro, Boonkird, Artittaya, Nguyen, Thanh, Drucker, Nathan C., Momiki, Takashi, Li, Ju, Kong, Jing, Li, Mingda
The precise controllability of the Fermi level is a critical aspect of quantum materials. For topological Weyl semimetals, there is a pressing need to fine-tune the Fermi level to the Weyl nodes and unlock exotic electronic and optoelectronic effects
Externí odkaz:
http://arxiv.org/abs/2310.07828
Autor:
Boonkird, Artittaya, Drucker, Nathan, Mandal, Manasi, Nguyen, Thanh, Yeo, Jingjie, Belosevich, Vsevolod, Spero, Ellan, Ortiz, Christine, Ma, Qiong, Fu, Liang, Palacios, Tomas, Li, Mingda
Topological materials are at the forefront of quantum materials research, offering tremendous potential for next-generation energy and information devices. However, current investigation of these materials remains largely focused on performance and o
Externí odkaz:
http://arxiv.org/abs/2308.09526
Autor:
Paul, Suvodeep, Negi, Devesh, Talukdar, Saswata, Karak, Saheb, Badola, Shalini, Poojitha, Bommareddy, Mandal, Manasi, Marik, Sourav, Singh, R. P., Pistawala, Nashra, Harnagea, Luminita, Thomas, Aksa, Soni, Ajay, Bhattacharjee, Subhro, Saha, Surajit
Tailoring the quantum many-body interactions in layered materials through appropriate heterostructure engineering can result in emergent properties that are absent in the constituent materials thus promising potential future applications. In this art
Externí odkaz:
http://arxiv.org/abs/2307.13400
Autor:
Mandal, Manasi, Drucker, Nathan C., Siriviboon, Phum, Nguyen, Thanh, Boonkird, Tiya, Lamichhane, Tej Nath, Okabe, Ryotaro, Chotrattanapituk, Abhijatmedhi, Li, Mingda
Topological superconductors (TSCs) have garnered significant research and industry attention in the past two decades. By hosting Majorana bound states which can be used as qubits that are robust against local perturbations, TSCs offer a promising pla
Externí odkaz:
http://arxiv.org/abs/2303.15581
Publikováno v:
Journal of Applied Physics; 11/14/2024, Vol. 136 Issue 18, p1-8, 8p
This work presents the emergence of superconductivity in Ir - doped Weyl semimetal T$_d$ - MoTe$_{2}$ with broken inversion symmetry. Chiral anomaly induced planar Hall effect and anisotropic magneto-resistance confirm the topological semimetallic na
Externí odkaz:
http://arxiv.org/abs/2108.10300
Autor:
Mandal, Manasi, Patra, Chandan, Kataria, Anshu, Singh, D., Biswas, P. K., Lord, J. S., Hillier, A. D., Singh, R. P.
Publikováno v:
Phys. Rev. B 104, 054509 (2021)
The nonsymmorphic Zr$_{2}$Ir alloy is a possible topological semimetal candidate material and as such may be part of an exotic class of superconductors. Zr$_{2}$Ir is a superconductor with a transition temperature of 7.4 K with critical fields of 19.
Externí odkaz:
http://arxiv.org/abs/2106.00268