Xia, Y. et al. Superconductivity in twisted bilayer WSe2. Nature 637, 2025–838 (2025).

Article 

Google Scholar
 

Guo, Y. et al. Superconductivity in 5.0° twisted bilayer WSe2. Nature 637, 839–845 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Cao, Y. et al. Correlated insulator behaviour at half-filling in magic-angle graphene superlattices. Nature 556, 80–84 (2018).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Yankowitz, M. et al. Tuning superconductivity in twisted bilayer graphene. Science 363, 1059–1064 (2019).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Lu, X. et al. Superconductors, orbital magnets and correlated states in magic-angle bilayer graphene. Nature 574, 653–657 (2019).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Park, J. M., Cao, Y., Watanabe, K., Taniguchi, T. & Jarillo-Herrero, P. Tunable strongly coupled superconductivity in magic-angle twisted trilayer graphene. Nature 590, 249–255 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Hao, Z. et al. Electric field–tunable superconductivity in alternating-twist magic-angle trilayer graphene. Science 371, 1133–1138 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zhou, H., Xie, T., Taniguchi, T., Watanabe, K. & Young, A. F. Superconductivity in rhombohedral trilayer graphene. Nature 598, 434–438 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zhou, H. et al. Isospin magnetism and spin-polarized superconductivity in Bernal bilayer graphene. Science 375, 774–778 (2022).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zhang, Y. et al. Enhanced superconductivity in spin–orbit proximitized bilayer graphene. Nature 613, 268–273 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Li, C. et al. Tunable superconductivity in electron- and hole-doped Bernal bilayer graphene. Nature 631, 300–306 (2024).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Holleis, L. et al. Nematicity and orbital depairing in superconducting Bernal bilayer graphene. Nat. Phys. 21, 444–450 (2025).

Article 
CAS 

Google Scholar
 

Choi, Y. et al. Superconductivity and quantized anomalous Hall effect in rhombohedral graphene. Nature 639, 342–347 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Patterson, C. L. et al. Superconductivity and spin canting in spin–orbit-coupled trilayer graphene. Nature 641, 632–638 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Han, T. et al. Signatures of chiral superconductivity in rhombohedral graphene. Nature 643, 654–661 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Wang, L. et al. Correlated electronic phases in twisted bilayer transition metal dichalcogenides. Nat. Mater. 19, 861–866 (2020).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Tang, Y. et al. Simulation of Hubbard model physics in WSe2/WS2 moiré superlattices. Nature 579, 353–358 (2020).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Regan, E. C. et al. Mott and generalized Wigner crystal states in WSe2/WS2 moiré superlattices. Nature 579, 359–363 (2020).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Li, H. et al. Imaging two-dimensional generalized Wigner crystals. Nature 597, 650–654 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Xu, Y. et al. Correlated insulating states at fractional fillings of moiré superlattices. Nature 587, 214–218 (2020).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Anderson, E. et al. Programming correlated magnetic states with gate-controlled moiré geometry. Science 381, 325–330 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Li, T. et al. Quantum anomalous Hall effect from intertwined moiré bands. Nature 600, 641–646 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Foutty, B. A. et al. Mapping twist-tuned multiband topology in bilayer WSe2. Science 384, 343–347 (2024).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Cai, J. et al. Signatures of fractional quantum anomalous Hall states in twisted MoTe2. Nature 622, 63–68 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zeng, Y. et al. Thermodynamic evidence of fractional Chern insulator in moiré MoTe2. Nature 622, 69–73 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Park, H. et al. Observation of fractionally quantized anomalous Hall effect. Nature 622, 74–79 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Xu, F. et al. Observation of integer and fractional quantum anomalous Hall effects in twisted bilayer MoTe2. Phys. Rev. X 13, 031037 (2023).

CAS 

Google Scholar
 

Xia, Y. et al. Bandwidth-tuned Mott transition and superconductivity in moiré WSe2. Nature 650, 585–591 (2026).

Article 
CAS 
PubMed 
PubMed Central 

Google Scholar
 

Arp, T. et al. Intervalley coherence and intrinsic spin–orbit coupling in rhombohedral trilayer graphene. Nat. Phys. 20, 1413–1420 (2024).

Article 
CAS 

Google Scholar
 

Yang, J. et al. Impact of spin–orbit coupling on superconductivity in rhombohedral graphene. Nat. Mater. 24, 1058–1065 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zhang, Y. et al. Twist-programmable superconductivity in spin–orbit-coupled bilayer graphene. Nature 641, 625–631 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Fischer, A. et al. Theory of intervalley-coherent AFM order and topological superconductivity in tWSe2. Phys. Rev. X 15, 041055 (2025).

CAS 

Google Scholar
 

Xie, F. et al. Superconductivity in twisted WSe2 from topology-induced quantum fluctuations. Phys. Rev. Lett. 134, 136503 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Qin, W., Qiu, W.-X. & Wu, F. Topological chiral superconductivity mediated by intervalley antiferromagnetic fluctuations in twisted bilayer WSe2. Phys. Rev. Lett. 135, 246002 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Klebl, L., Fischer, A., Classen, L., Scherer, M. M. & Kennes, D. M. Competition of density waves and superconductivity in twisted tungsten diselenide. Phys. Rev. Res. 5, L012034 (2023).

Article 
CAS 

Google Scholar
 

Chubukov, A. V. & Varma, C. M. Quantum criticality and superconductivity in twisted transition metal dichalcogenides. Phys. Rev. B 111, 014507 (2026).

Article 
ADS 

Google Scholar
 

Yang, H.-J. & Hsu, Y.-T. Displacement-field-driven transition between superconductivity and valley ferromagnetism in transition metal dichalcogenides. Preprint at https://arxiv.org/abs/2508.21119 (2025).

Christos, M., Bonetti, P. M. & Scheurer, M. S. Approximate symmetries, insulators, and superconductivity in the Continuum-model description of twisted WSe2. Phys. Rev. Lett. 135, 046503 (2025).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Zhu, J., Chou, Y.-Z., Xie, M. & Sarma, S. D. Superconductivity in twisted transition metal dichalcogenide homobilayers. Phys. Rev. B 111, L060501 (2025).

Article 
ADS 
CAS 

Google Scholar
 

Wu, F., Lovorn, T., Tutuc, E., Martin, I. & MacDonald, A. H. Topological insulators in twisted Transition metal dichalcogenide homobilayers. Phys. Rev. Lett. 122, 086402 (2019).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Crépel, V. & Millis, A. Bridging the small and large in twisted transition metal dichalcogenide homobilayers: a tight binding model capturing orbital interference and topology across a wide range of twist angles. Phys. Rev. Res. 6, 033127 (2024).

Article 

Google Scholar
 

Ghiotto, A. et al. Stoner instabilities and ising excitonic states in twisted transition metal dichalcogenides. Preprint at https://arxiv.org/abs/2405.17316 (2024).

Zang, J., Wang, J., Cano, J. & Millis, A. J. Hartree-Fock study of the moiré Hubbard model for twisted bilayer transition metal dichalcogenides. Phys. Rev. B 104, 075150 (2021).

Article 
ADS 
CAS 

Google Scholar
 

Tinkham, M. Introduction to Superconductivity 2nd edn (Dover Publications, 2004).

Uemura, Y. J. Condensation, excitation, pairing, and superfluid density in high-Tc superconductors: the magnetic resonance mode as a roton analogue and a possible spin-mediated pairing. J. Phys. Condens. Matter 16, S4515 (2004).

Article 
ADS 
CAS 

Google Scholar
 

Muñoz-Segovia, D., Crépel, V., Queiroz, R. & Millis, A. J. Twist-angle evolution of the intervalley-coherent antiferromagnet in twisted WSe2. Phys. Rev. B 112, 085111 (2025).

Article 
ADS 

Google Scholar
 

Ryee, S. et al. Site-polarized Mott phases competing with a correlated metal in twisted WSe2. Phys. Rev. B 113, L081106 (2026).

Article 

Google Scholar
 

Pack, J. et al. Charge-transfer contacts for the measurement of correlated states in high-mobility WSe2. Nat. Nanotechnol. 19, 948–954 (2024).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Wang, L. et al. One-dimensional electrical contact to a two-dimensional material. Science 342, 614–617 (2013).

Article 
ADS 
CAS 
PubMed 

Google Scholar
 

Devakul, T., Crépel, V., Zhang, Y. & Fu, L. Magic in twisted transition metal dichalcogenide bilayers. Nat. Commun. 12, 6730 (2021).

Article 
ADS 
CAS 
PubMed 
PubMed Central 

Google Scholar
 

Metzner, W., Salmhofer, M., Honerkamp, C., Meden, V. & Schönhammer, K. Functional renormalization group approach to correlated fermion systems. Rev. Mod. Phys. 84, 299–352 (2012).

Article 
ADS 

Google Scholar
 

Profe, J., Kennes, D. M. & Klebl, L. divERGe implements various Exact Renormalization Group examples. Preprint at SciPost Physics Codebases https://doi.org/10.21468/SciPostPhysCodeb.26 (2024).