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Control of topological phase transitions in Dirac semimetal films by exchange fields
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作者 杨菲 王海龙 潘晖 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期386-390,共5页
The exchange field effects on topological Dirac semimetal(DSM) films are discussed in this article. A topological phase transition can be controlled by tuning the exchange field together with the quantum confinement... The exchange field effects on topological Dirac semimetal(DSM) films are discussed in this article. A topological phase transition can be controlled by tuning the exchange field together with the quantum confinement effects. What is more interesting is that the system can transit into the quantum anomalous Hall(QAH) state from the topologically trivial state(Z2 = 0) or from the topologically nontrivial state(Z2 = 1), depending on the thickness of the DSM films. This provides a useful mechanism to realize the QAH state from the DSM. 展开更多
关键词 exchange field Dirac semimetal quantum anomalous Hall state quantum spin Hall state
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Distinct edge states and optical conductivities in the zigzag and armchair silicene nanoribbons under exchange and electric fields
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作者 邹剑飞 康静 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第3期410-416,共7页
Based on the tight binding model, we investigate the low energy bandstructures, edge states, and optical absorptions for the silicene nanoribbons (SiNRs) with different terminations under an in-plane exchange field ... Based on the tight binding model, we investigate the low energy bandstructures, edge states, and optical absorptions for the silicene nanoribbons (SiNRs) with different terminations under an in-plane exchange field and/or a perpendicular electric field. We find that the zigzag SiNRs are gapped by the exchange field, but they could reenter the metallic state after the application of the electric field. Contrarily, a certain kind of armchair SiNRs remain gapless even if a weak exchange field is present. Furthermore, the combination of the exchange and electric fields could effectively modulate the penetration length and the components of the edge states in the SiNRs. The corresponding optical conductivities for the SiNRs are also calculated, which show remarkable dependence on the edge types of the SiNRs and the two external fields. 展开更多
关键词 silicene nanoribbon edge state optical conductivity exchange field
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STUDY OF THE EXCHANGE BIAS FIELD OF NiFe/FeMn BILAYERS
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作者 M.H. Li1’2), G.H. Yu1). F. W. Zhu1) and W.Y. Lai2) 1)Department of Material Physics, University of Science and Technology Beijing, Beijing 100083, China 2)State Key Laboratory for Magnetism. Institute of Physics, The Chinese Academy of Sciences, Beijing 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2002年第2期238-242,共5页
The exchange bias field of NiFe/FeMn films with Ta/ Cu buffer was proved tobe lower than that of the films with Ta buffer. The crystallographic texture, surface roughness andelements distribution were examined in thes... The exchange bias field of NiFe/FeMn films with Ta/ Cu buffer was proved tobe lower than that of the films with Ta buffer. The crystallographic texture, surface roughness andelements distribution were examined in these two sets of samples, and there is no apparentdifference for the texture and roughness. However, the segregation of Cu atoms above NiFe surface inthe multilayer of Ta/Cu/NiFe has been observed by using the angle-resolved X-ray photoelectronspectroscopy (XPS). The decrease of the exchange bias field for NiFe/FeMn films with Ta/ Cu bufferlayers is mainly caused by the Cu atoms segregation at the interface between NiFe and FeMn. 展开更多
关键词 NiFe/FeMn exchange bias field TEXTURE surface roughness SURFACESEGREGATION
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Influence of temperature on thermal relaxation of exchange bias field in CoFe/Cu/CoFe/IrMn spin valve
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作者 祁先进 杨妮娜 +1 位作者 段孝旭 李雪竹 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第10期554-559,共6页
A multilayered spin valve film with a structure of Ta(5 nm)/Co_(75)Fe_(25)(5 nm)/Cu(2.5 nm)/Co_(75)Fe_(25)(5 nm)/Ir_(20)Mn_(80)(12 nm)/Ta(8 nm)is prepared by the high-vacuum direct current(DC)magnetron sputtering.The ... A multilayered spin valve film with a structure of Ta(5 nm)/Co_(75)Fe_(25)(5 nm)/Cu(2.5 nm)/Co_(75)Fe_(25)(5 nm)/Ir_(20)Mn_(80)(12 nm)/Ta(8 nm)is prepared by the high-vacuum direct current(DC)magnetron sputtering.The effect of temperature on the spin valve structure and the magnetic properties are studied by x-ray diffraction(XRD),atomic force microscopy(AFM),and vibrating sample magnetometry.The effect of temperature on the exchange bias field thermomagnetic properties of multilayered spin valve is studied by the residence time of samples in a reverse saturation field.The results show that as the temperature increases,the IrMn(111)texture weakens,surface/interface roughness increases,and the exchange bias field decreases.Below 200℃,the exchange bias field decreases with the residence time increasing,and at the beginning of the negative saturation field,the exchange bias field Hex decreases first quickly and then slowly gradually.When the temperature is greater than 200℃,the exchange bias field is unchanged with the residence time increasing. 展开更多
关键词 exchange bias field spin valves TEMPERATURE thermal relaxation
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Magnetic field‐enhanced water splitting enabled by bifunctional molybdenum‐doped nickel sulfide on nickel foam
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作者 Yuanyuan Zhang Mengxin Chen +5 位作者 Ping Guo Yunchen Du Bo Song Xianjie Wang Zaixing Jiang Ping Xu 《Carbon Energy》 SCIE EI CAS CSCD 2023年第10期50-63,共14页
Herein,we report bifunctional molybdenum-doped nickel sulfide on nickel foam(Mo-NiS_(x)/NF)for magnetic field-enhanced overall water splitting under alkaline conditions.Proper doping of Mo can lead to optimization of ... Herein,we report bifunctional molybdenum-doped nickel sulfide on nickel foam(Mo-NiS_(x)/NF)for magnetic field-enhanced overall water splitting under alkaline conditions.Proper doping of Mo can lead to optimization of the electronic structure of NiS_(x),which accelerates the dissociation of H2O and the adsorption of OH−in the hydrogen evolution reaction(HER)and the oxygen evolution reaction(OER)processes,respectively.In addition,the magnetically active Mo-NiS_(x)/NF can further enhance the HER and OER activity under an applied magnetic field due to the magnetoresistance effect and the ferromagnetic(FM)exchange-field penetration effect.As a result,Mo-NiS_(x)/NF requires low overpotentials of 307 mV at 50mA cm^(−2)(for OER)and 136 mV at 10mA cm^(−2)(for HER)under a magnetic field of 10000 G.Furthermore,the electrolytic cell constructed by the bifunctional Mo-NiS_(x)/NFs as both the cathode and the anode shows a low cell voltage of 1.594 V at 10 mA cm^(−2)with optimal stability over 60 h under the magnetic field.Simultaneous enhancement of the HER and OER processes by an external magnetic field through rational design of electrocatalysts might be promising for overall water splitting applications. 展开更多
关键词 electron density modulation FM exchangefield penetration effect magnetic field magnetoresistance effect water splitting
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Field Experience Exchange Meeting for the Northern Region of National Agricultural Standardization Demonstration Area Held
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《China Standardization》 2004年第6期16-16,共1页
关键词 field Experience exchange Meeting for the Northern Region of National Agricultural Standardization Demonstration Area Held
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Temperature-dependent interlayer exchange coupling strength in synthetic antiferromagnetic [Pt/Co]_2/Ru/[Co/Pt]_4 multilayers
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作者 李勇 金香君 +3 位作者 潘鹏飞 Fu Nan Tan Wen Siang Lew 马付胜 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第12期127-131,共5页
In this work, we experimentally investigated the thermal stability of the interlayer exchange coupling field(Hex) and strength(-Jiec) in synthetic antiferromagnetic(SAF) structure of [Pt(0.6)/Co(0.6)]2/Ru(tRu)/[Co(0.6... In this work, we experimentally investigated the thermal stability of the interlayer exchange coupling field(Hex) and strength(-Jiec) in synthetic antiferromagnetic(SAF) structure of [Pt(0.6)/Co(0.6)]2/Ru(tRu)/[Co(0.6)/Pt(0.6)]4multilayers with perpendicular anisotropy. Depending on the thickness of the spacing ruthenium(Ru) layer, the observed interlayer exchange coupling can be either ferromagnetic or antiferromagnetic. The Hexwere studied by measuring the magnetization hysteresis loops in the temperature range from 100 K to 700 K as well as the theoretical calculation of the-Jiec. It is found that the interlayer coupling in the multilayers is very sensitive to the thickness of Ru and temperature. The Hexexhibits either a linear or a non-linear dependence on the temperature for different thickness of Ru. Furthermore, our SAF multilayers show a high thermal stability even up to 600 K(Hex= 3.19 kOe,-Jiec= 1.97 erg/cm~2 for tRu=0.6 nm, the unit 1 Oe = 79.5775 A·m-1), which was higher than the previous studies. 展开更多
关键词 synthetic antiferromagnetic exchange coupling field interlayer exchange coupling strength
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XPS Studies of Magnetic Multilayers 被引量:2
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作者 Guanghua Yu, Hongchen Zhao, Jiao Teng, Chunlin Chai, Fengwu Zhu, Yang Xia, Shumin Chai Material Science and Engineering School, University of Science and Technology Beijing, Beijing 100083, China Microelectronics Center, Chinese Academy of Science, Beijin 《Journal of University of Science and Technology Beijing》 CSCD 2001年第3期210-213,共4页
NiOx/Ni81Fe19 and Co/AlOx/Co magnetic multilayers were fabricated by reactive RF/DC magnetron sputtering on clean glass substrates and oxidized Si (100) substrates, respectively. The exchange biasing field (H-ex) betw... NiOx/Ni81Fe19 and Co/AlOx/Co magnetic multilayers were fabricated by reactive RF/DC magnetron sputtering on clean glass substrates and oxidized Si (100) substrates, respectively. The exchange biasing field (H-ex) between NiO4 and Ni81Fe19 as a function of NiOx oxidation states was studied by X-ray photoelectron spectroscopy (XPS). The oxidation states and the oxide thickness of Al layers in magnetic multilayer films consisting of Co/AlOx/Co were also analyzed. It is found that the H-sr of NiOx/Ni81Fe19 films only depends on Ni2+ but not on Ni3+ or Ni. The bottom Co can be completely covered by depositing an A I layer thicker than 2.0 nm. The oxide layer was Al2O3, and its thickness was 1.15 mn. 展开更多
关键词 NIOX exchange biasing field H-ex AlOx X-ray photoelectron spectroscopy (XPS)
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XPS Studies of Chemical States of NiO/NiFe Interface 被引量:2
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作者 Guanghua Yu, Chunlin Chai, Fengwu Zhu, Jimei Xiao, Wuyan Lai 1)Materials Science and Engineering School, University of Science and Technology Beijing, Beijing 100083, China 2)Institute of Physics. Chinese Academy of Sciences. Beijing, 100080, China 《Journal of University of Science and Technology Beijing》 CSCD 2001年第4期270-273,共4页
Ta/NTiO/NiFe/Ta multilayers were prepared by radio frequency reactive and dc magnetron sputtering. The exchange coupling field between NiO and NiFe reached 9.6 x 10(3) A/m. The compositions and chemical states at the ... Ta/NTiO/NiFe/Ta multilayers were prepared by radio frequency reactive and dc magnetron sputtering. The exchange coupling field between NiO and NiFe reached 9.6 x 10(3) A/m. The compositions and chemical states at the interface region of NiO/NiFe were studied using the X-ray photoelectron spectroscopy (XPS) and peak decomposition technique, The results show that there are two thermodynamically favorable reactions at NiO/NiFe interface: NiO+Fe = Ni + FeO and 3NiO+2Fe =3 Ni+Fe2O3. The thickness of the chemical reaction area estimated by angle-resolved XPS was about 1-1.5 nm. These interface reaction products appear magnetic defects, and the exchange coupling field H-ex and the coereivity H-c of NiO/NiFe are affected by these defects. 展开更多
关键词 chemical states exchange coupling field H-ex coercivity H-c X-ray photoelectron spectroscopy (XPS)
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