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Prof. Manabendra Kuiri

Assistant Professor,
Department of Physics

Graphene and 2D materials, Quantum Materials, Van der Waals heterostructures, nanoscale devices
Birla Institute of Technology & Science, Pilani
Hyderabad Campus
Jawahar Nagar, Kapra Mandal
Dist.-Medchal-500 078
Telangana, India
Office: A202

Journal Publications

 

16. Metastable magnetic domains and the anomalous B∥=0 resistance peak in twisted double bilayer graphene.

Zhenxiang Gao, Christopher Coleman, Silvia Folk, Ruiheng Su, Manabendra Kuiri, Kenji Watanabe, Takashi Taniguchi, Nemin Wei, Chunli Huang, Joshua Folk

arXiv:2608.25263 (2026)

15. Signatures of a ferro-Josephson effect in twisted graphene.

Ruiheng Su, Zhenxiang Gao, Christopher Coleman, Manabendra Kuiri, Dacen Waters, Kenji Watanabe, Takashi Taniguchi, Matthew Yankowitz, Nemin Wei, Chunli Huang, Allan H. MacDonald, Joshua Folk

arXiv:2608.25257 (2026)

14. Interferometry reveals spin-singlet fractional quantum Hall edges in graphene.

R. Ayache†, K. Kim†, M. Kuiri†, Q. Benichou, H. Chakraborti, L. Pugliese, K. Watanabe, T. Taniguchi, H.-S. Sim, P. Roulleau.

arXiv:2609.01233 (2026)   [† Equal contribution]

13. Magnons reveal topology and dynamics of a skyrmion crystal.

R. Ayache†, N. Chakraborty†, M. Kuiri†, Q. Benichou, A. Lacerda-Santos, L. Seyve, H. Chakraborti, L. Pugliese, K. Watanabe, T. Taniguchi, C. Gorini, R. Moessner, B. Doucot, P. Roulleau.

arXiv:2607.16023 (2026)   [† Equal contribution]

12. Superconductivity in Twisted Double Bilayer Graphene Stabilized by WSe₂.

R. Su, M. Kuiri, K. Watanabe, T. Taniguchi, and J. Folk.

Nature Materials 22, 1332–1337 (2023).

11. Spontaneous Time-Reversal Symmetry Breaking in Twisted Double Bilayer Graphene.

M. Kuiri, C. Coleman, Z. Gao, A. Vishnuradhan, K. Watanabe, T. Taniguchi, J. Zhu, A. H. MacDonald, and J. Folk.

Nature Communications 13, 6468 (2022).

10. Enhanced Electron-Phonon Coupling in Doubly Aligned hBN Bilayer Graphene Heterostructure.

M. Kuiri, S. K. Srivastav, S. Ray, K. Watanabe, T. Taniguchi, T. Das, and A. Das.

Phys. Rev. B 103, 115419 (2021).

9. Thickness-Dependent Transition from 1T′ to Weyl Semimetal Phase in Ultrathin MoTe₂: Electrical Transport, Noise, and Raman Studies.

M. Kuiri, S. Das, A. K. Sood, and A. Das.

Nanoscale 12, 8371–8378 (2020).

8. Energetics of the Complex Phase Diagram of a Tunable Bilayer Graphene Probed by Quantum Capacitance.

M. Kuiri and A. Das.

Phys. Rev. B 99, 125411 (2019).

7. Large Landau-Level Splitting in a Tunable One-Dimensional Graphene Superlattice Probed by Magnetocapacitance Measurements.

M. Kuiri, G. K. Gupta, Y. Ronen, T. Das, and A. Das.

Phys. Rev. B 98, 035418 (2018).

6. Equilibration of Quantum Hall Edge States and its Conductance Fluctuations in Graphene p-n Junctions.

C. Kumar, M. Kuiri, and A. Das.

Solid State Communications 270, 38–44 (2018).

5. Phototunable Transfer Characteristics in MoTe₂-MoS₂ Vertical Heterostructure.

A. K. Paul, M. Kuiri, D. Saha, B. Chakraborty, S. Mahapatra, A. K. Sood, and A. Das.

npj 2D Materials and Applications 1, 17 (2017).

4. Electron-Hole Asymmetry in the Electron-Phonon Coupling in Top-Gated Phosphorene Transistor.

B. Chakraborty, S. N. Gupta, A. Singh, M. Kuiri, C. Kumar, DVS Muthu, A. Das, UV Waghmare, and A. K. Sood.

2D Materials 3, 015008 (2016).

3. Tunability of 1/f Noise at Multiple Dirac Cones in hBN Encapsulated Graphene Devices.

C. Kumar*, M. Kuiri*, J. Jung, T. Das, and A. Das.

Nano Lett. 16, 1042–1049 (2016).   [* Equal contribution]

2. Enhancing Photoresponsivity using MoTe₂-Graphene Vertical Heterostructures.

M. Kuiri, B. Chakraborty, A. K. Paul, S. Das, A. K. Sood, and A. Das.

Appl. Phys. Lett. 108, 063506 (2016).

1. Probing 2D black phosphorus by quantum capacitance measurements.

M. Kuiri, C. Kumar, B. Chakraborty, S. N. Gupta, M. H. Naik, M. Jain, A. K. Sood, and A. Das.

Nanotechnology 26, 485704 (2015).