Literature DB >> 33046856

Local negative permittivity and topological phase transition in polar skyrmions.

S Das1,2, Z Hong3,4, V A Stoica3, M A P Gonçalves5,6,7, Y T Shao8, E Parsonnet9, E J Marksz10, S Saremi11, M R McCarter9, A Reynoso9, C J Long10, A M Hagerstrom10, D Meyers11, V Ravi11, B Prasad11, H Zhou12, Z Zhang12, H Wen12, F Gómez-Ortiz6, P García-Fernández6, J Bokor13, J Íñiguez5,7, J W Freeland12, N D Orloff10, J Junquera6, L Q Chen3, S Salahuddin13, D A Muller8,14, L W Martin11,15, R Ramesh16,17,18.   

Abstract

Topological solitons such as magnetic skyrmions have drawn attention as stable quasi-particle-like objects. The recent discovery of polar vortices and skyrmions in ferroelectric oxide superlattices has opened up new vistas to explore topology, emergent phenomena and approaches for manipulating such features with electric fields. Using macroscopic dielectric measurements, coupled with direct scanning convergent beam electron diffraction imaging on the atomic scale, theoretical phase-field simulations and second-principles calculations, we demonstrate that polar skyrmions in (PbTiO3)n/(SrTiO3)n superlattices are distinguished by a sheath of negative permittivity at the periphery of each skyrmion. This enhances the effective dielectric permittivity compared with the individual SrTiO3 and PbTiO3 layers. Moreover, the response of these topologically protected structures to electric field and temperature shows a reversible phase transition from the skyrmion state to a trivial uniform ferroelectric state, accompanied by large tunability of the dielectric permittivity. Pulsed switching measurements show a time-dependent evolution and recovery of the skyrmion state (and macroscopic dielectric response). The interrelationship between topological and dielectric properties presents an opportunity to simultaneously manipulate both by a single, and easily controlled, stimulus, the applied electric field.

Entities:  

Year:  2020        PMID: 33046856     DOI: 10.1038/s41563-020-00818-y

Source DB:  PubMed          Journal:  Nat Mater        ISSN: 1476-1122            Impact factor:   43.841


  5 in total

1.  Antiferroelectric negative capacitance from a structural phase transition in zirconia.

Authors:  Michael Hoffmann; Zheng Wang; Nujhat Tasneem; Ahmad Zubair; Prasanna Venkatesan Ravindran; Mengkun Tian; Anthony Arthur Gaskell; Dina Triyoso; Steven Consiglio; Kandabara Tapily; Robert Clark; Jae Hur; Sai Surya Kiran Pentapati; Sung Kyu Lim; Milan Dopita; Shimeng Yu; Winston Chern; Josh Kacher; Sebastian E Reyes-Lillo; Dimitri Antoniadis; Jayakanth Ravichandran; Stefan Slesazeck; Thomas Mikolajick; Asif Islam Khan
Journal:  Nat Commun       Date:  2022-03-09       Impact factor: 14.919

2.  Spontaneous helielectric nematic liquid crystals: Electric analog to helimagnets.

Authors:  Xiuhu Zhao; Junchen Zhou; Jinxing Li; Junichi Kougo; Zhe Wan; Mingjun Huang; Satoshi Aya
Journal:  Proc Natl Acad Sci U S A       Date:  2021-10-19       Impact factor: 11.205

3.  Ultrathin ferroic HfO2-ZrO2 superlattice gate stack for advanced transistors.

Authors:  Suraj S Cheema; Nirmaan Shanker; Li-Chen Wang; Cheng-Hsiang Hsu; Shang-Lin Hsu; Yu-Hung Liao; Matthew San Jose; Jorge Gomez; Wriddhi Chakraborty; Wenshen Li; Jong-Ho Bae; Steve K Volkman; Daewoong Kwon; Yoonsoo Rho; Gianni Pinelli; Ravi Rastogi; Dominick Pipitone; Corey Stull; Matthew Cook; Brian Tyrrell; Vladimir A Stoica; Zhan Zhang; John W Freeland; Christopher J Tassone; Apurva Mehta; Ghazal Saheli; David Thompson; Dong Ik Suh; Won-Tae Koo; Kab-Jin Nam; Dong Jin Jung; Woo-Bin Song; Chung-Hsun Lin; Seunggeol Nam; Jinseong Heo; Narendra Parihar; Costas P Grigoropoulos; Padraic Shafer; Patrick Fay; Ramamoorthy Ramesh; Souvik Mahapatra; Jim Ciston; Suman Datta; Mohamed Mohamed; Chenming Hu; Sayeef Salahuddin
Journal:  Nature       Date:  2022-04-06       Impact factor: 69.504

4.  Domain Engineering in Bulk Ferroelectric Ceramics via Mesoscopic Chemical Inhomogeneity.

Authors:  Hao-Cheng Thong; Zhao Li; Jing-Tong Lu; Chen-Bo-Wen Li; Yi-Xuan Liu; Qiannan Sun; Zhengqian Fu; Yan Wei; Ke Wang
Journal:  Adv Sci (Weinh)       Date:  2022-04-17       Impact factor: 17.521

5.  Liberating a hidden antiferroelectric phase with interfacial electrostatic engineering.

Authors:  Julia A Mundy; Bastien F Grosso; Colin A Heikes; Dan Ferenc Segedin; Zhe Wang; Yu-Tsun Shao; Cheng Dai; Berit H Goodge; Quintin N Meier; Christopher T Nelson; Bhagwati Prasad; Fei Xue; Steffen Ganschow; David A Muller; Lena F Kourkoutis; Long-Qing Chen; William D Ratcliff; Nicola A Spaldin; Ramamoorthy Ramesh; Darrell G Schlom
Journal:  Sci Adv       Date:  2022-02-02       Impact factor: 14.136

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.