Optical second harmonic signature of phase coexistence in ferroelectric|dielectric heterostructures
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M. Fiebig | M. Rossell | M. Trassin | N. Strkalj | M. Campanini | A. Bortis
[1] Y. Tang,et al. Topological polar structures in ferroelectric oxide films , 2021 .
[2] M. Fiebig,et al. Stabilization and manipulation of in-plane polarization in a ferroelectric|dielectric superlattice , 2021 .
[3] R. Ramesh,et al. A new era in ferroelectrics , 2020, APL Materials.
[4] M. Fiebig,et al. In-situ monitoring of interface proximity effects in ultrathin ferroelectrics , 2020, Nature Communications.
[5] M. Fiebig,et al. Tracking ferroelectric domain formation during epitaxial growth of PbTiO3 films , 2020, Applied Physics Letters.
[6] Zuhuang Chen,et al. Recent Progress on Topological Structures in Ferroic Thin Films and Heterostructures , 2020, Advanced materials.
[7] L. X. Yang,et al. Polar meron lattice in strained oxide ferroelectrics , 2020, Nature Materials.
[8] X. Bai,et al. Subunit cell–level measurement of polarization in an individual polar vortex , 2019, Science Advances.
[9] M. Trassin,et al. Design and Manipulation of Ferroic Domains in Complex Oxide Heterostructures , 2019, Materials.
[10] Joel Nothman,et al. SciPy 1.0-Fundamental Algorithms for Scientific Computing in Python , 2019, ArXiv.
[11] L. Martin,et al. Emergence of the Vortex State in Confined Ferroelectric Heterostructures , 2019, Advanced materials.
[12] V. Gopalan,et al. Optical creation of a supercrystal with three-dimensional nanoscale periodicity , 2019, Nature Materials.
[13] Lane W. Martin,et al. Observation of room-temperature polar skyrmions , 2019, Nature.
[14] J. Íñiguez,et al. Ferroelectric negative capacitance , 2019, Nature Reviews Materials.
[15] Christopher T. Nelson,et al. Spatially resolved steady-state negative capacitance , 2019, Nature.
[16] Haidong Lu,et al. Characterization of domain distributions by second harmonic generation in ferroelectrics , 2018, npj Computational Materials.
[17] Johanna Nordlander,et al. Probing Ferroic States in Oxide Thin Films Using Optical Second Harmonic Generation , 2018 .
[18] Christopher T. Nelson,et al. Emergent chirality in the electric polarization texture of titanate superlattices , 2018, Proceedings of the National Academy of Sciences.
[19] A. Jesacher,et al. Material characterisation with methods of nonlinear optics , 2018 .
[20] Shuang-yue Li,et al. Large Scale Two-Dimensional Flux-Closure Domain Arrays in Oxide Multilayers and Their Controlled Growth. , 2017, Nano letters.
[21] M. Fiebig,et al. Nanoscale design of polarization in ultrathin ferroelectric heterostructures , 2017, Nature Communications.
[22] M. Raschke,et al. Phase coexistence and electric-field control of toroidal order in oxide superlattices. , 2017, Nature materials.
[23] Y. Liu,et al. Periodic arrays of flux-closure domains in ferroelectric thin films with oxide electrodes , 2017 .
[24] R. Hertel,et al. Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy , 2017, Nature Communications.
[25] Chan-Ho Yang,et al. Ferroelectric domain states of a tetragonal BiFeO3 thin film investigated by second harmonic generation microscopy , 2017, Nanoscale Research Letters.
[26] L. Martin,et al. Stability of Polar Vortex Lattice in Ferroelectric Superlattices. , 2017, Nano letters.
[27] M. Fiebig,et al. Domain Wall Architecture in Tetragonal Ferroelectric Thin Films , 2017, Advanced materials.
[28] K. Jin,et al. Evolution of structural distortion in BiFeO3 thin films probed by second-harmonic generation , 2016, Scientific Reports.
[29] J. Íñiguez,et al. Negative capacitance in multidomain ferroelectric superlattices , 2016, Nature.
[30] M. Fiebig,et al. Probing Ferroelectric Domain Engineering in BiFeO3 Thin Films by Second Harmonic Generation , 2015, Advanced materials.
[31] Lewys Jones,et al. Smart Align—a new tool for robust non-rigid registration of scanning microscope data , 2015, Advanced Structural and Chemical Imaging.
[32] S. Pennycook,et al. Observation of a periodic array of flux-closure quadrants in strained ferroelectric PbTiO3 films , 2015, Science.
[33] Hongchu Du. A nonlinear filtering algorithm for denoising HR(S)TEM micrographs. , 2015, Ultramicroscopy.
[34] L. You,et al. Negative capacitance in a ferroelectric capacitor. , 2014, Nature materials.
[35] Benjamin Berkels,et al. Picometre-precision analysis of scanning transmission electron microscopy images of platinum nanocatalysts , 2014, Nature Communications.
[36] A Gloter,et al. Electrostatic coupling and local structural distortions at interfaces in ferroelectric/paraelectric superlattices. , 2012, Nano letters.
[37] Amit Kumar,et al. Probing Ferroelectrics Using Optical Second Harmonic Generation , 2011 .
[38] Amit Kumar,et al. Probing mixed tetragonal/rhombohedral-like monoclinic phases in strained bismuth ferrite films by optical second harmonic generation , 2010 .
[39] S. Datta,et al. Use of negative capacitance to provide voltage amplification for low power nanoscale devices. , 2008, Nano letters.
[40] V. Gopalan,et al. Domain Structure‐Second Harmonic Generation Correlation in Potassium Niobate Thin Films Deposited on a Strontium Titanate Substrate , 1996 .
[41] V. Gopalan,et al. DOMAIN STRUCTURE AND PHASE TRANSITIONS IN EPITAXIAL KNBO3 THIN FILMS STUDIED BY IN SITU SECOND HARMONIC GENERATION MEASUREMENTS , 1996 .