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Localization and delocalization of light in photonic moire lattices 期刊论文
NATURE, 2020, 577 (7788) : 42-+
作者:  Wang, Peng;  Zheng, Yuanlin;  Chen, Xianfeng;  Huang, Changming;  Kartashov, Yaroslav V.;  Torner, Lluis;  Konotop, Vladimir V.;  Ye, Fangwei
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/03

Moire lattices consist of two superimposed identical periodic structures with a relative rotation angle. Moire lattices have several applications in everyday life, including artistic design, the textile industry, architecture, image processing, metrology and interferometry. For scientific studies, they have been produced using coupled graphene-hexagonal boron nitride monolayers(1,2), graphene-graphene layers(3,4) and graphene quasicrystals on a silicon carbide surface(5). The recent surge of interest in moire lattices arises from the possibility of exploring many salient physical phenomena in such systems  examples include commensurable-incommensurable transitions and topological defects(2), the emergence of insulating states owing to band flattening(3,6), unconventional superconductivity(4) controlled by the rotation angle(7,8), the quantum Hall effect(9), the realization of non-Abelian gauge potentials(10) and the appearance of quasicrystals at special rotation angles(11). A fundamental question that remains unexplored concerns the evolution of waves in the potentials defined by moire lattices. Here we experimentally create two-dimensional photonic moire lattices, which-unlike their material counterparts-have readily controllable parameters and symmetry, allowing us to explore transitions between structures with fundamentally different geometries (periodic, general aperiodic and quasicrystal). We observe localization of light in deterministic linear lattices that is based on flatband physics(6), in contrast to previous schemes based on light diffusion in optical quasicrystals(12), where disorder is required(13) for the onset of Anderson localization(14) (that is, wave localization in random media). Using commensurable and incommensurable moire patterns, we experimentally demonstrate the twodimensional localization-delocalization transition of light. Moire lattices may feature an almost arbitrary geometry that is consistent with the crystallographic symmetry groups of the sublattices, and therefore afford a powerful tool for controlling the properties of light patterns and exploring the physics of periodic-aperiodic phase transitions and two-dimensional wavepacket phenomena relevant to several areas of science, including optics, acoustics, condensed matter and atomic physics.


  
Chiral superconductivity in heavy-fermion metal UTe2 期刊论文
NATURE, 2020, 579 (7800) : 523-527
作者:  Chica, Daniel G.;  He, Yihui;  McCall, Kyle M.;  Chung, Duck Young;  Pak, Rahmi O.;  Trimarchi, Giancarlo;  Liu, Zhifu;  De Lurgio, Patrick M.;  Wessels, Bruce W.;  Kanatzidis, Mercouri G.
收藏  |  浏览/下载:45/0  |  提交时间:2020/07/03

Scanning tunnelling microscopy and spectroscopy measurements show chiral edge states inside the superconducting gap of the heavy-fermion superconductor UTe2, indicating the presence of chiral spin-triplet superconductivity.


Spin-triplet superconductors are condensates of electron pairs with spin 1 and an odd-parity wavefunction(1). An interesting manifestation of triplet pairing is the chiral p-wave state, which is topologically non-trivial and provides a natural platform for realizing Majorana edge modes(2,3). However, triplet pairing is rare in solid-state systems and has not been unambiguously identified in any bulk compound so far. Given that pairing is usually mediated by ferromagnetic spin fluctuations, uranium-based heavy-fermion systems containing f-electron elements, which can harbour both strong correlations and magnetism, are considered ideal candidates for realizing spin-triplet superconductivity(4). Here we present scanning tunnelling microscopy studies of the recently discovered heavy-fermion superconductor UTe2, which has a superconducting transition temperature of 1.6 kelvin(5). We find signatures of coexisting Kondo effect and superconductivity that show competing spatial modulations within one unit cell. Scanning tunnelling spectroscopy at step edges reveals signatures of chiral in-gap states, which have been predicted to exist at the boundaries of topological superconductors. Combined with existing data that indicate triplet pairing in UTe2, the presence of chiral states suggests that UTe2 is a strong candidate for chiral-triplet topological superconductivity.


  
Emergent ferromagnetism near three-quarters filling in twisted bilayer graphene 期刊论文
SCIENCE, 2019, 365 (6453) : 605-608
作者:  Sharpe, Aaron L.;  Fox, Eli J.;  Barnard, Arthur W.;  Finney, Joe;  Watanabe, Kenji;  Taniguchi, Takashi;  Kastner, M. A.;  Goldhaber-Gordon, David
收藏  |  浏览/下载:16/0  |  提交时间:2019/11/27
Counter-propagating charge transport in the quantum Hall effect regime 期刊论文
SCIENCE, 2019, 363 (6422) : 54-+
作者:  Lafont, Fabien;  Rosenblatt, Amir;  Heiblum, Moty;  Umansky, Vladimir
收藏  |  浏览/下载:0/0  |  提交时间:2019/11/27
Observation of the quantum spin Hall effect up to 100 kelvin in a monolayer crystal 期刊论文
SCIENCE, 2018, 359 (6371) : 76-79
作者:  Wu, Sanfeng;  Fatemi, Valla;  Gibson, Quinn D.;  Watanabe, Kenji;  Taniguchi, Takashi;  Cava, Robert J.;  Jarillo-Herrero, Pablo
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27
Time-resolved x-ray absorption spectroscopy with a water window high-harmonic source 期刊论文
SCIENCE, 2017, 355 (6322) : 264-+
作者:  Pertot, Yoann;  Schmidt, Cedric;  Matthews, Mary;  Chauvet, Adrien;  Huppert, Martin;  Svoboda, Vit;  von Conta, Aaron;  Tehlar, Andres;  Baykusheva, Denitsa;  Wolf, Jean-Pierre;  Worner, Hans Jakob
收藏  |  浏览/下载:4/0  |  提交时间:2019/11/27