Recent Articles

Optimization of the crystal growth of the superconductor CaKFe4As4 from solution in the FeAsCaFe2As2KFe2As2 system

W. R. Meier, T. Kong, S. L. Bud'ko, and P. C. Canfield

Phys. Rev. Materials 1, 013401 (2017) - Published 19 June, 2017

Obtaining single crystals of CaKFe4As4 is a significant challenge due to intergrowth of CaFe2As2 and KFe2As2. Guided by physical property measurements and concepts of phase equilibria, the authors adjusted the growth procedure to obtain phase pure single crystals. In addition, results of their many growth attempts provide a glimpse of the quaternary Ca-K-Fe-As phase diagram. Insights and concepts presented in this case study will aid other researchers grappling with difficult syntheses.

Magnetic behavior and spin-lattice coupling in cleavable van der Waals layered CrCl3 crystals

Michael A. McGuire, Genevieve Clark, Santosh KC, W. Michael Chance, Gerald E. Jellison, Jr., Valentino R. Cooper, Xiaodong Xu, and Brian C. Sales

Phys. Rev. Materials 1, 014001 (2017) - Published 19 June, 2017

Cleavable magnetic materials provide not only a means to study magnetism in the ultimate 2D limit, but also enable increased functionality for van der Waals heterostructures. Here the authors explore the layered antiferromagnet CrCl3. Thermodynamic measurements show ferromagnetic correlations develop before long-range order between the layers is established; van der Waals density functional calculations indicate strong coupling of the magnetism to the crystal lattice, and the authors demonstrate mechanical exfoliation of the bulk crystals into stable monolayer specimens. Together these results show CrCl3 to be a promising compound for studying monolayer magnetism and for integrating magnetism into heterostructures with complementary optoelectronic materials.

Dynamical multiferroicity

Dominik M. Juraschek, Michael Fechner, Alexander V. Balatsky, and Nicola A. Spaldin

Phys. Rev. Materials 1, 014401 (2017) - Published 19 June, 2017

In many multiferroic materials, the ferroelectric polarization is induced by a spatially varying magnetization such as a spin spiral. Here the authors introduce the reciprocal effect, in which a time-dependent electric polarization induces a magnetization even in previously nonmagnetic materials. The authors illustrate this dynamical multiferroic effect with four examples—the phonon Zeeman effect, the optical excitation of magnons and electromagnons, and the inverse Faraday effect—which they investigate using a combination of density functional theory, and microscopic and phenomenological analysis. The mechanism provides a general route to dynamically engineering new behaviors that are not accessible in the static domain.

Probing length-scale separation of thermal and spin currents by nanostructuring YIG

Asuka Miura, Takashi Kikkawa, Ryo Iguchi, Ken-ichi Uchida, Eiji Saitoh, and Junichiro Shiomi

Phys. Rev. Materials 1, 014601 (2017) - Published 19 June, 2017

Collective near-field thermal emission from polaritonic nanoparticle arrays

Eric Tervo, Zhuomin Zhang, and Baratunde Cola

Phys. Rev. Materials 1, 015201 (2017) - Published 19 June, 2017

Plasmonic enhancement of a silicon-vacancy center in a nanodiamond crystal

Xiang Meng, Shang Liu, Jerry I. Dadap, and Richard M. Osgood, Jr.

Phys. Rev. Materials 1, 015202 (2017) - Published 19 June, 2017

Combining the AFLOW GIBBS and elastic libraries to efficiently and robustly screen thermomechanical properties of solids

Cormac Toher, Corey Oses, Jose J. Plata, David Hicks, Frisco Rose, Ohad Levy, Maarten de Jong, Mark Asta, Marco Fornari, Marco Buongiorno Nardelli, and Stefano Curtarolo

Phys. Rev. Materials 1, 015401 (2017) - Published 19 June, 2017

Potential resolution to the doping puzzle in iron pyrite: Carrier type determination by Hall effect and thermopower

Xin Zhang, Mengqun Li, Jeff Walter, Liam O’Brien, Michael A. Manno, Bryan Voigt, Frazier Mork, Sergey V. Baryshev, James Kakalios, Eray S. Aydil, and Chris Leighton

Phys. Rev. Materials 1, 015402 (2017) - Published 19 June, 2017

Dewetting in immiscible polymer bilayer films

J. Lal, S. Malkova, M. K. Mukhopadhyay, S. Narayanan, A. Fluerasu, S. B. Darling, L. B. Lurio, and M. Sutton

Phys. Rev. Materials 1, 015601 (2017) - Published 19 June, 2017

From elasticity to capillarity in soft materials indentation

Jonathan T. Pham, Frank Schellenberger, Michael Kappl, and Hans-Jürgen Butt

Phys. Rev. Materials 1, 015602 (2017) - Published 19 June, 2017

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