Yamani Z, Tun Z, Ryan D H. Neutron scattering study of the classical antiferromagnet MnF2:a perfect hands-on neutron scattering teaching course[J]. Canadian Journal of Physics, 2010, 88(10):771-797.
[2]
Bardeen J, Cooper L N, Schrieffer J R. Theory of Superconductivity[J]. Physical Review, 1957, 108(5):1175-1204.
[3]
Dai P. Antiferromagnetic order and spin dynamics in iron-based superconductors[J]. Reviews of Modern Physics, 2015, 87(3):855-896.
[4]
Christianson A D, Goremychkin E A, Osborn R, et al. Unconventional superconductivity in Ba0. 6K0. 4Fe2As2 from inelastic neutron scattering[J]. Nature, 2008, 456(7224):930-932.
[5]
Hong W, Song L, Liu B, et al. Neutron spin resonance in a quasitwo-dimensional iron-based superconductor[J]. Physical Review Letters, 2020, 125(11):117002.
[6]
Schrieffer J R. Theory of superconductivity[M]. MA:Benjamin, 1964.
[7]
Scalapino D J. A common thread:The pairing interaction for unconventional superconductors[J]. Reviews of Modern Physics, 2012, 84(4):1383-1417.
[8]
Anderson P W. Resonating valence bonds:A new kind of insulator?[J]. Materials Research Bulletin, 1973, 8(2):153-160.
[9]
Anderson P W. The resonating valence bond state in La2CuO4 and superconductivity[J]. Science, 1987, 235(4793):1196-1198.
[10]
Ioffe L B, Feigel'man M V, Ioselevich A, et al. Topologically protected quantum bits using Josephson junction arrays[J]. Nature, 2002, 415(6871):503-506.
[11]
Mourigal M, Enderle M, Klöpperpieper A, et al. Fractional spinon excitations in the quantum Heisenberg antiferromagnetic chain[J]. Nature Physics, 2013, 9(7):435-441.
[12]
Rösslhuber R, Pustogow A, Uykur E, et al. Phase coexistence at the first-order Mott transition revealed by pressure-dependent dielectric spectroscopy of κ-(BEDT-TTF) 2-Cu 2 (CN) 3[J]. Physical Review B, 2021, 103(12):125111.
[13]
Helton J S, Matan K, Shores M P, et al. Spin dynamics of the spin-1/2 kagome lattice antiferromagnet ZnCu 3 (OH) 6 Cl 2[J]. Physical review letters, 2007, 98(10):107204.
[14]
Shen Y, Li Y D, Wo H, et al. Evidence for a spinon Fermi surface in a triangular-lattice quantum-spin-liquid candidate[J]. Nature, 2016, 540(7634):559-562.
[15]
Li Y D, Lu Y M, Chen G. Spinon Fermi surface U (1) spin liquid in the spin-orbit-coupled triangular-lattice Mott insulator YbMgGaO 4[J]. Physical Review B, 2017, 96(5):054445.
[16]
Li Y D, Shen Y, Li Y, et al. Effect of spin-orbit coupling on the effective-spin correlation in YbMgGaO 4[J]. Physical Review B, 2018, 97(12):125105.
[17]
Shen Y, Liu C, Qin Y, et al. Intertwined dipolar and multipolar order in the triangular-lattice magnet TmMgGaO4[J]. Nature communications, 2019, 10(1):1-7.
[18]
Grenier B, Simonet V, Canals B, et al. Neutron diffraction investigation of the H-T phase diagram above the longitudinal incommensurate phase of BaCo2V2O8[J]. Physical Review B, 2015, 92 (13):134416.
[19]
? Vining C. B. An inconvenient truth about thermoelectrics. Nat. Mater. 8, 83-85 (2009).
[20]
? Snyder G. J. & Toberer, E. S. Complex thermoelectric materials. Nat. Mater. 7, 105-114 (2008).
[21]
Ren Q., et al. Thermoelectric materials and inelastic neutronscattering techniques. SCIENTIA SINICA Physica, Mechanica & Astronomica 51, 087332 (2021).
Ren Q., et al. Establishing the carrier scattering phase diagram for ZrNiSn-based half-Heusler thermoelectric materials. Nat. Commun. 11, 3142 (2020).
[24]
? Delaire O., et al. Giant anharmonic phonon scattering in PbTe. Nat. Mater. 10, 614-619 (2011).
[25]
Zhang Y., et al. Anomalous Lattice Dynamics near the Ferroelectric Instability in PbTe. Phys. Rev. Lett. 107, 175503 (2011).
[26]
Shrestha U R, Mamontov E, O'Neill H M, et al. Experimental mapping of short-wavelength phonons in proteins[J]. The Innovation, 2022, 3(1).
[27]
Hong L, Jain N, Cheng X, et al. Determination of functional collective motions in a protein at atomic resolution using coherent neutron scattering[J]. Science advances, 2016, 2(10):e1600886.