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140 related items for PubMed ID: 21405357
1. Theory of electric polarization in multiorbital Mott insulators. Mostovoy M, Nomura K, Nagaosa N. Phys Rev Lett; 2011 Jan 28; 106(4):047204. PubMed ID: 21405357 [Abstract] [Full Text] [Related]
2. High-spin to low-spin and orbital polarization transitions in multiorbital Mott systems. Werner P, Millis AJ. Phys Rev Lett; 2007 Sep 21; 99(12):126405. PubMed ID: 17930531 [Abstract] [Full Text] [Related]
3. Floquet Engineering of Multiorbital Mott Insulators: Applications to Orthorhombic Titanates. Liu J, Hejazi K, Balents L. Phys Rev Lett; 2018 Sep 07; 121(10):107201. PubMed ID: 30240238 [Abstract] [Full Text] [Related]
4. Dynamical magnetoelectric phenomena of multiferroic skyrmions. Mochizuki M, Seki S. J Phys Condens Matter; 2015 Dec 23; 27(50):503001. PubMed ID: 26624202 [Abstract] [Full Text] [Related]
5. Bose-Hubbard models with synthetic spin-orbit coupling: Mott insulators, spin textures, and superfluidity. Cole WS, Zhang S, Paramekanti A, Trivedi N. Phys Rev Lett; 2012 Aug 24; 109(8):085302. PubMed ID: 23002754 [Abstract] [Full Text] [Related]
6. Spontaneous Spin Textures in Multiorbital Mott Systems. Kuneš J, Geffroy D. Phys Rev Lett; 2016 Jun 24; 116(25):256403. PubMed ID: 27391736 [Abstract] [Full Text] [Related]
7. Emergent chirality in the electric polarization texture of titanate superlattices. Shafer P, García-Fernández P, Aguado-Puente P, Damodaran AR, Yadav AK, Nelson CT, Hsu SL, Wojdeł JC, Íñiguez J, Martin LW, Arenholz E, Junquera J, Ramesh R. Proc Natl Acad Sci U S A; 2018 Jan 30; 115(5):915-920. PubMed ID: 29339493 [Abstract] [Full Text] [Related]
8. Theory of the optical conductivity of spin liquid states in one-dimensional Mott insulators. Katsura H, Sato M, Furuta T, Nagaosa N. Phys Rev Lett; 2009 Oct 23; 103(17):177402. PubMed ID: 19905782 [Abstract] [Full Text] [Related]
9. Microscopic theory of ultrafast spin linear reversal. Zhang GP. J Phys Condens Matter; 2011 May 25; 23(20):206005. PubMed ID: 21540517 [Abstract] [Full Text] [Related]
10. Disproportionation and metallization at low-spin to high-spin transition in multiorbital Mott systems. Kuneš J, Křápek V. Phys Rev Lett; 2011 Jun 24; 106(25):256401. PubMed ID: 21770658 [Abstract] [Full Text] [Related]
11. Affleck-Kennedy-Lieb-Tasaki State on a Honeycomb Lattice from t(2g) Orbitals. Koch-Janusz M, Khomskii DI, Sela E. Phys Rev Lett; 2015 Jun 19; 114(24):247204. PubMed ID: 26197004 [Abstract] [Full Text] [Related]
12. Topological transport in spin-orbit coupled bosonic Mott insulators. Wong CH, Duine RA. Phys Rev Lett; 2013 Mar 15; 110(11):115301. PubMed ID: 25166549 [Abstract] [Full Text] [Related]
13. Theory of doped Mott insulators: duality between pairing and magnetism. Wang QH. Phys Rev Lett; 2004 Feb 06; 92(5):057003. PubMed ID: 14995334 [Abstract] [Full Text] [Related]
14. Field-induced orbital antiferromagnetism in mott insulators. Al-Hassanieh KA, Batista CD, Ortiz G, Bulaevskii LN. Phys Rev Lett; 2009 Nov 20; 103(21):216402. PubMed ID: 20366056 [Abstract] [Full Text] [Related]
15. Berry Phase of Phonons and Thermal Hall Effect in Nonmagnetic Insulators. Saito T, Misaki K, Ishizuka H, Nagaosa N. Phys Rev Lett; 2019 Dec 20; 123(25):255901. PubMed ID: 31922786 [Abstract] [Full Text] [Related]
16. Ultrafast optical pumping of spin and orbital polarizations in the antiferromagnetic Mott insulators R(2)CuO(4). Pavlov VV, Pisarev RV, Gridnev VN, Zhukov EA, Yakovlev DR, Bayer M. Phys Rev Lett; 2007 Jan 26; 98(4):047403. PubMed ID: 17358811 [Abstract] [Full Text] [Related]
17. Gauge fields in real and momentum spaces in magnets: monopoles and skyrmions. Nagaosa N, Yu XZ, Tokura Y. Philos Trans A Math Phys Eng Sci; 2012 Dec 28; 370(1981):5806-19. PubMed ID: 23166382 [Abstract] [Full Text] [Related]
18. Exotic magnetic order in the orbital-selective Mott regime of multiorbital systems. Rincón J, Moreo A, Alvarez G, Dagotto E. Phys Rev Lett; 2014 Mar 14; 112(10):106405. PubMed ID: 24679314 [Abstract] [Full Text] [Related]