(a), (c), (e) bi-2212/ bi2te3 and (b), (d), (f) bi-2212/graphite (color online) crystal structure of double-layered bi-2212 and B · t decoupling phase diagram for crystal bi2212-a, before (open
Crystal structure of (a) Bi-2212, (b) IBi-2212 and (c) (HgBr 2 ) 0 . 5
(color online) (a) diagram of the device structure on a bi- 2212 Crystal structure of (a) bi-2212 and (b) (hgbrz)o,sbi-2212. Bi-2223 phase evolution with temperature and time.
(a) stm image for a ud bi2212 sample, obtained at 85 k and v s = 30 mv
Figure 1 from critical current and structure of bi-2212 bulk oxidesB · t decoupling phase diagram for crystal bi2212-a, before (open Summary of the bi-2201, bi-2212 and bi-2223 phase evolution withIncoherent strange metal sharply bounded by a critical doping in bi2212.
Figure 1 from correlation between oxygen excess density and criticalThe structure of the unit cell of the bi 2212 crystal plotted in the bc Phase diagram of cuprate superconductors. schematic phase diagram ofThe anisotropic resistivity ratio of the bi-2212 phase for (a) a.
![Comparison of Bi-2212 a and c axis lattice parameter changes upon](https://i2.wp.com/www.researchgate.net/profile/Mark-Rikel/publication/275719879/figure/fig7/AS:668304783986702@1536347685627/Comparison-of-Bi-2212-a-and-c-axis-lattice-parameter-changes-upon-heating-of-a.png)
Time dependence of the 110 diffraction line of the bi-2212 phase during
(a) cross section of bi-2212 wire. picture courtesy of ost. (b) crossCuprate superconductors doping cuprates superconductivity pseudogap insulator fermi antiferromagnetic The vortex phase diagram of bi-2212. hp is the sp field. from ourA cross-sectional micrograph for bi-2212 conductor. b cross-sectional.
Cuprate superconductorsSolved 9. given the bi-sb (bismuth-antimony) binary phase Bi 2212 xrd wt ag peaks diffractionPreparation of high-performance high temperature superconducting bi.
![Crystal structure of (a) Bi-2212, (b) IBi-2212 and (c) (HgBr 2 ) 0 . 5](https://i2.wp.com/www.researchgate.net/publication/230953468/figure/fig2/AS:300593076817925@1448678382490/Crystal-structure-of-a-Bi-2212-b-IBi-2212-and-c-HgBr-2-0-5-Bi-2212.png)
Tomographic cross sections of bi-2212 powder particles held inside an
(a) the dependence of -t characteristics of bi-2212 single crystal onSuperconductor–insulator transition in monolayer bi-2212 a Phase superconducting 2212 compoundSummary of the bi-2201, bi-2212 and bi-2223 phase evolution with.
Insulator transition superconductor monolayer resistivity 2212 dependent phase superconducting phasesPhase diagram of the little-parks like resistance oscillations in Comparison of bi-2212 a and c axis lattice parameter changes uponCrystal structure of (a) bi-2212, (b) ibi-2212 and (c) (hgbr 2 ) 0 . 5.
![The vortex phase diagram of Bi-2212. Hp is the SP field. From our](https://i2.wp.com/www.researchgate.net/publication/242301687/figure/fig5/AS:923536856207360@1597199753186/The-vortex-phase-diagram-of-Bi-2212-Hp-is-the-SP-field-From-our-result-it-is-assumed.png)
2212 bi device structure
Xrd patterns of the bi-2212 (a) and bi-2212 + 3 wt.% ag (b). bi-22122212 bi structure Collection of phase diagramsPhase diagram of the bi-2212 compound. superconducting transition.
Temperature dependence of resistance of dip-coated bi-2212Overview – dream .
![Preparation of high-performance high temperature superconducting Bi](https://i2.wp.com/www.researchgate.net/publication/373192093/figure/fig2/AS:11431281182205860@1692324422586/Heat-treatment-profiles-for-partial-melt-processing_Q640.jpg)
![Instruments | Free Full-Text | Superconducting Accelerator Magnets](https://i2.wp.com/pub.mdpi-res.com/instruments/instruments-04-00017/article_deploy/html/images/instruments-04-00017-g001.png?1593429457)
Instruments | Free Full-Text | Superconducting Accelerator Magnets
Summary of the Bi-2201, Bi-2212 and Bi-2223 phase evolution with
![The anisotropic resistivity ratio of the Bi-2212 phase for (a) a](https://i2.wp.com/www.researchgate.net/publication/316946236/figure/fig1/AS:494483218997248@1494905394228/The-anisotropic-resistivity-ratio-of-the-Bi-2212-phase-for-a-a-simulated-fiber-texture.png)
The anisotropic resistivity ratio of the Bi-2212 phase for (a) a
![Crystal structure of (a) Bi-2212 and (b) (HgBrz)o,sBi-2212. | Download](https://i2.wp.com/www.researchgate.net/publication/237524835/figure/fig2/AS:669016016306192@1536517256738/Crystal-structure-of-a-Bi-2212-and-b-HgBrzo-sBi-2212.png)
Crystal structure of (a) Bi-2212 and (b) (HgBrz)o,sBi-2212. | Download
![(a) The dependence of -T characteristics of Bi-2212 single crystal on](https://i2.wp.com/www.researchgate.net/profile/Kentaro-Kinoshita/publication/257724489/figure/fig1/AS:339836746649605@1458034802322/a-The-dependence-of-T-characteristics-of-Bi-2212-single-crystal-on-the-Ar-annealing.png)
(a) The dependence of -T characteristics of Bi-2212 single crystal on
![(Color online) (a) Diagram of the device structure on a Bi- 2212](https://i2.wp.com/www.researchgate.net/profile/Alexei_Koshelev/publication/258484872/figure/download/fig1/AS:297403170213888@1447917849961/Color-online-a-Diagram-of-the-device-structure-on-a-Bi-2212-crystal-after-Ref-2.png)
(Color online) (a) Diagram of the device structure on a Bi- 2212
![(a), (c), (e) Bi-2212/ Bi2Te3 and (b), (d), (f) Bi-2212/graphite](https://i2.wp.com/www.researchgate.net/publication/315950958/figure/fig3/AS:1132483563257856@1647016530024/a-c-e-Bi-2212-Bi2Te3-and-b-d-f-Bi-2212-graphite-a-b-Offset.jpg)
(a), (c), (e) Bi-2212/ Bi2Te3 and (b), (d), (f) Bi-2212/graphite
![Bi-2223 phase evolution with temperature and time. | Download](https://i2.wp.com/www.researchgate.net/profile/Vincent-Garnier/publication/248278685/figure/fig3/AS:1128418737438723@1646047400484/Bi-2212-phase-evolution-with-temperature-and-time_Q320.jpg)
Bi-2223 phase evolution with temperature and time. | Download