Zuzanna Sobczak
Gdańsk University of Technology
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Featured researches published by Zuzanna Sobczak.
Science Advances | 2018
Elizabeth M. Carnicom; Weiwei Xie; Tomasz Klimczuk; Jingjing Lin; Karolina Górnicka; Zuzanna Sobczak; Nai Phuan Ong; R. J. Cava
Two superconductors with a new chiral noncentrosymmetric crystal structure and Hc2 values above the Pauli limit. It is a fundamental truth in solid compounds that the physical properties follow the symmetry of the crystal structure. Nowhere is the effect of symmetry more pronounced than in the electronic and magnetic properties of materials—even the projection of the bulk crystal symmetry onto different crystal faces is known to have a substantial impact on the surface electronic states. The effect of bulk crystal symmetry on the properties of superconductors is widely appreciated, although its study presents substantial challenges. The effect of a lack of a center of symmetry in a crystal structure, for example, has long been understood to necessitate that the wave function of the collective electron state that gives rise to superconductivity has to be more complex than usual. However, few nonhypothetical materials, if any, have actually been proven to display exotic superconducting properties as a result. We introduce two new superconductors that in addition to having noncentrosymmetric crystal structures also have chiral crystal structures. Because the wave function of electrons in solids is particularly sensitive to the host material’s symmetry, crystal structure chirality is expected to have a substantial effect on their superconducting wave functions. Our two experimentally obtained chiral noncentrosymmetric superconducting materials have transition temperatures to superconductivity that are easily experimentally accessible, and our basic property characterization suggests that their superconducting properties may be unusual. We propose that their study may allow for a more in-depth understanding of how chirality influences the properties of superconductors and devices that incorporate them.
Physical Review Materials | 2017
Elizabeth M. Carnicom; Weiwei Xie; Zuzanna Sobczak; Tai Kong; Tomasz Klimczuk; R. J. Cava
We show that the previously unreported ternary
Journal of Physical Chemistry C | 2018
Xin Gui; Xin Zhao; Zuzanna Sobczak; Cai-Zhuang Wang; Tomasz Klimczuk; Kai-Ming Ho; Weiwei Xie
\sigma
Catalysts | 2017
Anna Zielińska-Jurek; Zuzanna Bielan; Szymon Dudziak; Izabela Wolak; Zuzanna Sobczak; Tomasz Klimczuk; Grzegorz Nowaczyk; Jan Hupka
-phase material Nb
Physica C-superconductivity and Its Applications | 2016
J. Strychalska; M. Roman; Zuzanna Sobczak; B. Wiendlocha; Michał J. Winiarski; F. Ronning; Tomasz Klimczuk
_{20.4}
Solar Energy Materials and Solar Cells | 2018
Anna Kuczyńska-Łażewska; Ewa Klugmann-Radziemska; Zuzanna Sobczak; Tomasz Klimczuk
Ru
Catalysts | 2017
Anna Zielińska-Jurek; Zuzanna Bielan; Szymon Dudziak; Izabela Wolak; Zuzanna Sobczak; Tomasz Klimczuk; Grzegorz Nowaczyk; Jan Hupka
_{5.7}
arXiv: Superconductivity | 2018
Elizabeth M. Carnicom; Weiwei Xie; Tomasz Klimczuk; Jingjing Lin; Karolina Górnicka; Zuzanna Sobczak; Nai Phuan Ong; R. J. Cava
Ge
Physical Review B | 2018
Jan Hembacher; Danis I. Badrtdinov; Lei Ding; Zuzanna Sobczak; C. Ritter; V. V. Mazurenko; Alexander A. Tsirlin
_{3.9}
Chemistry of Materials | 2018
Xin Gui; Zuzanna Sobczak; Tay-Rong Chang; Xitong Xu; Angus Huang; Shuang Jia; Horng-Tay Jeng; Tomasz Klimczuk; Weiwei Xie
is a superconductor with a critical temperature of 2.2 K. Temperature-dependent magnetic susceptibility, resistance, and specific heat measurements were used to characterize the superconducting transition. The Sommerfeld constant