Antia Sanchez Botana
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Mail code: 1504Campus: Tempe
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Antia Botana is an assistant professor in the Department of Physics. Prior to joining ASU, she was a postdoctoral fellow at Argonne National Lab and at the University of California, Davis. Her research employs density functional theory to direct the computational design of materials with novel functionalities. She works on topics ranging from superconductivity to frustrated magnetism, thermoelectricity, and confinement effects in nanostructures.
Ph.D. Physics, University of Santiago de Compostela, Spain
Theoretical and computational condensed matter physics, electronic structure, density functional theory, ab initio molecular dynamics, strongly correlated electron systems, oxide heterostructures, magnetic properties, phase transitions, spin-orbit coupling effects, thermoelectricity, high temperature superconductivity, quantum magnetism.
Jonathan Karp, Alexander Hampel, Manuel Zingl, Antia S. Botana, Hyowon Park, Michael R. Norman, and Andrew J. Millis. Comparative many-body study of Pr4Ni3O8 and NdNiO2. Phys. Rev. B 102, 245130 (2020)
Jyoti Krishna, Harrison LaBollita, Adolfo O. Fumega, Victor Pardo, and Antia S. Botana. Effects of Sr doping on the electronic and spin-state properties of infinite-layer nickelates: Nature of holes. Phys. Rev. B 102, 224506 (2020).
Dibyendu Dey and Antia S. Botana. Role of chemical pressure on the electronic and magnetic properties of the spin-1/2 kagome mineral averievite. Phys. Rev. B 102, 125106 (2020)
Jesse Kapeghian and Antia S. Botana. Electronic structure and magnetism in infinite-layer nickelates RNiO2 (R=La−Lu). Phys. Rev. B, 102 205130 (2020)
Emilian M. Nica, Jyoti Krishna, Rong Yu, Qimiao Si, Antia S. Botana, and Onur Erten. Theoretical investigation of superconductivity in trilayer square-planar nickelates. Phys. Rev. B, 102 020504(R) (2020)
Dibyendu Dey and Antia S. Botana. Structural, electronic, and magnetic properties of vanadium-based Janus dichalcogenide monolayers: A first-principles study. Phys. Rev. Materials 4, 074002 (2020)
Jonathan Karp, Antia S. Botana, Michael R. Norman, Hyowon Park, Manuel Zingl, and Andrew Millis. Phys. Rev. X 10, 021061 (2020)
Clark Miller and Antia S. Botana. Cupratelike electronic and magnetic properties of layered transition-metal difluorides from first-principles calculations. Phys. Rev. B 101, 195116 (2020)
Antia S. Botana and Michael R. Norman, Similarities and Differences between LaNiO2 and CaCuO2 and Implications for Superconductivity. Physical Review X 10, 011024 (2020)
MA Khan, Q Zhang, JK Bao, RS Fishman, AS Botana, Y Choi, et al. Steplike metamagnetic transitions in a honeycomb lattice antiferromagnet. Physical Review Materials 3, 11441 (2019)
Junjie Zhang, Daniel M. Pajerowski, Antia S. Botana, et al. Spin stripe order in a square planar trilayer nickelate. Physical Review Letters 122, 247201 (2019).
Junjie Zhang, Daniel Phelan, AS Botana, Yu-Sheng Chen, Hong Zheng, M Krogstad, Suyin Grass Wang, Yiming Qiu, JA Rodriguez-Rivera, R Osborn, S Rosenkranz, MR Norman, JF Mitchell. Nature Communications 11, 6003 (2020)
Jesse Kapeghian and Antia S. Botana. Electronic structure and magnetism in infinite-layer nickelates RNiO2 (R=La−Lu). Phys. Rev. B 102, 205130 (2020)
Dibyendu Dey and Antia S. Botana. Role of chemical pressure on the electronic and magnetic properties of the spin-1/2 kagome mineral averievite. Phys. Rev. B 102, 125106 (2020)
A. J. E Rettie, C. D. Malliakas, A. S. Botana, J. K. Bao, D. Y. Chung, M. G. Kanatzidis. KCu7P3: A Two-Dimensional Noncentrosymmetric Metallic Pnictide. Inorganic chemistry 58, 10201 (2019).
A. S. Botana, and M. R. Norman. Electronic structure and magnetism of transition metal dihalides: bulk to monolayer. Physical Review Materials 3, 044001 (2019).
A. S. Botana, and M. R. Norman. “Layered palladates and their relation to nickelates and cuprates”. Physical Review Materials 2 , 104803 (2018).
N. J. Ghimire, M. A. Khan, A. S. Botana, J. S. Jiang, J. F. Mitchell “Anisotropic angular magnetoresistance and Fermi surface topology of the candidate novel topological metal Pd3Pb”. Physical Review Materials 2, 081201 (2018).
N. J. Ghimire, A. S. Botana, J. S. Jiang, J. Zhang, Y. S. Chen, J. F. Mitchell “Large anomalous Hall effect in the chiral-lattice antiferromagnet CoNb3S6” Nature Communications 9, 3280 (2018).
A. S. Botana, H. Zheng, S. H. Lapidus, J. F. Mitchell, and M. R. Norman. “Averievite: A copper oxide kagome antiferromagnet” Phys. Rev. B 98, 054421 (2018).
A. J. E Rettie, C. D. Malliakas, A. S. Botana, J. M. Hodges, F. Han, R. Huang, et al. Ag2Se to KAg3Se2: Suppressing Order-Disorder Transitions via Reduced Dimensionality. JACS 140, 9193 (2018)
Junjie Zhang, A. S. Botana, J. W. Freeland, D. Phelan, Hong Zheng, V. Pardo, M. R. Norman, J. F. Mitchell. Mimicking cuprates: large orbital polarization in a metallic square-planar nickelate, Nature Physics 13, 864 (2017). Highlighted by U.S. DOE and Argonne National Laboratory.
Antia S. Botana, Victor Pardo and Michael R. Norman. Electron doped layered nickelates: spanning the phase diagram of the cuprates, Physical Review Materials 1, 021801(R) (2017). Editor’s suggestion.
A. Rettie, M. Sturza, C. Malliakas, A. S. Botana, D. Y. Chung, M. G. Kanatzidis. Copper vacancies and heavy holes in the two-dimensional semiconductor KCu3−xSe2. Chemistry of Materials 29, 6114 (2017).
J. Xu, N. J. Ghimire, J. S. Jiang, A. S. Botana, Z. L. Xiao, Y. L. Wang, Y. Hao, J. E. Pearson, and W. K. Kwok. Origin of the Extremely Large Magnetoresistance in the Semimetal YSb. Physical Review B 96, 075159 (2017).
F. Han, J. Xu, A. S. Botana, Z. L. Xiao, Y. L. Wang, W. G. Yang, D. Y. Chung, M. G. Kanatzidis, M. R. Norman, G. W. Crabtree, and W. K. Kwok. Separation of electron and hole dynamics in the semimetal LaSb. Physical Review B 96, 125112 (2017).
Antia S. Botana, Victor Pardo, and Warren E. Pickett. All-3d electron-hole bilayers in CrN/MgO (111) multilayers for thermoelectric applications. Physical Review Applied 7, 024002 (2017).
Antia S. Botana, and Michael R. Norman. Electronic structure of CuTeO4 and its relationship to cuprates. Physical Review B 95, 115123 (2017).
Antia S. Botana, Victor Pardo, Warren E. Pickett and Michael R. Norman. Charge ordering in Ni1+/Ni2+ nickelates: La4Ni3O8 and La3Ni2O6. Physical Review B 94, 081105(R) (2016).
N. J. Ghimire, A. S. Botana, D. Phelan, H. Zheng, J.F. Mitchell. Magnetotransport of single-crystalline YSb. Journal of Physics: Condensed Matter 28, 235601 (2016).
Antia S. Botana, Victor Pardo, and Warren E. Pickett. Nitride Multilayers as a Platform for Parallel Two-Dimensional Electron-Hole Gases: MgO/ ScN(111). Physical Review B 93, 085125 (2016).
Antia S. Botana, Yundi Quan, and Warren E. Pickett. Disturbing the dimers: Electron and hole doping in the intermetallic insulator FeGa3, Physical Review B 92, 155134 (2015).
Antia S. Botana and Warren E. Pickett. Dielectric Response of Electron-doped Ionic Superconductor LixZrNCl, Physical Review B 90, 125145 (2014). Editor’s suggestion.
V. Pardo, A. S. Botana and D. Baldomir. Charge ordering at the interface in (LaMnO3)2n/ (SrMnO3)n superlattices as the origin of their insulating state. Applied Physics Letters 104, 081602 (2014).
Victor Pardo, Antia S. Botana, and Daniel Baldomir, Strain effects to optimize the thermoelectric properties of hole-doped La2NiO4+δ via ab initio calculations. Physical Review B 87, 125148 (2013).
A. S. Botana, Victor Pardo, Daniel Baldomir and Peter Blaha. Conducting states caused by a surface electric dipole in CrN(001) very thin films. Physical Review B 87, 075114 (2013).
Victor Pardo, Antia S. Botana, and Daniel Baldomir. Enhanced thermoelectric response of hole-doped La2NiO4+δ from ab initio calculations. Physical Review B 86, 165114 (2012).
Carlos Martinez-Boubeta, Antia S. Botana, Victor Pardo, Daniel Baldomir, Aldrin Antony, Joan Bertomeu, Josep M. Rebled, Lluis Lopez- Conesa, Sonia Estrade, and Francesca Peiro. Heteroepitaxial growth of MgO(111) thin films on Al2O3(0001): Evidence of a wurtzite to rocksalt transformation. Physical Review B 86, 041407(R) (2012).
A. S. Botana, F. Tran, V. Pardo, D. Baldomir, and P. Blaha. Electronic structure of CrN: A comparison between different exchange-correlation potentials. Physical Review B 85, 235118 (2012).
A. S. Botana, V. Pardo, D. Baldomir, A. V. Ushakov, and D. I. Khomskii. Electronic structure of V4O7: Charge ordering, metal-insulator transition, and magnetism. Physical Review B 84, 115138 (2011).
A. S. Botana, P. M. Botta, C. de la Calle, A. Pineiro, V. Pardo, D. Baldomir and J. A. Alonso. Non-one-dimensional behavior in charge-ordered structurally quasi-one-dimensional Sr6Co5O15. Physical Review B 83, 184420 (2011).
A. Pineiro, A. S. Botana, V. Pardo, J. Botana, M. Pereiro, D. Baldomir and J. E. Arias. Effects of applied pressure in ZnV2O4 and evidence for a dimerized structure. Journal of Applied Physics 109, 07E158 (2011).
A. S. Botana, P. M. Botta, C. de la Calle, A. Pineiro, V. Pardo, J. Botana, M. Pereiro, D. Baldomir, J. A. Alonso, and J. E. Arias. Electronic structure analysis of the quasi-one-dimensional oxide Sr6Co5O15 within the LDA+U method. Journal of Applied Physics 109, 07E114 (2011).
A. Pineiro, A. S. Botana, V. Pardo, and D. Baldomir. Fermiology and magnetism in weak itinerant ferromagnet CoS2: an ab initio study”, Journal of Physics: Condensed Matter 22, 505602 (2010).
Courses
2023 Fall
Course Number | Course Title |
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PHY 151 | Physics II |
PHY 495 | Project Research |
PHY 792 | Research |
PHY 799 | Dissertation |
PHY 799 | Dissertation |
2023 Summer
Course Number | Course Title |
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PHY 792 | Research |
PHY 792 | Research |
2023 Spring
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2022 Fall
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
2022 Summer
Course Number | Course Title |
---|---|
PHY 792 | Research |
PHY 792 | Research |
2022 Spring
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2021 Fall
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2021 Summer
Course Number | Course Title |
---|---|
PHY 792 | Research |
PHY 792 | Research |
2021 Spring
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2020 Fall
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2020 Summer
Course Number | Course Title |
---|---|
PHY 792 | Research |
PHY 792 | Research |
2020 Spring
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2019 Fall
Course Number | Course Title |
---|---|
PHY 495 | Project Research |
PHY 792 | Research |
PHY 131 | Univ Physics II: Elctrc/Magnet |
2019 Summer
Course Number | Course Title |
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PHY 792 | Research |
2019 Spring
Course Number | Course Title |
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PHY 499 | Individualized Instruction |
PHY 792 | Research |
PHY 582 | Quantum Theory of Solids II |
2018 Fall
Course Number | Course Title |
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PHY 792 | Research |