Thermodynamics of boron incorporation in BGaN
Jimmy-Xuan Shen, Mark E. Turiansky, Darshana Wickramaratne, and Chris G. Van de Walle
Phys. Rev. Materials 5, L030401 (2021) - Published 9 March, 2021
Michael Thoennessen
Phys. Rev. Materials 5, 030001 (2021) - Published 9 March, 2021
D. Chaney, A. Castellano, A. Bosak, J. Bouchet, F. Bottin, B. Dorado, L. Paolasini, S. Rennie, C. Bell, R. Springell, and G. H. Lander
Phys. Rev. Materials 5, 035004 (2021) - Published 30 March, 2021
Many desirable material properties may be associated with disorder exhibiting local periodicity or correlations. However, few systems allow systematic studies into the effects of intrinsic crystallographic conflict on correlated disorder. The authors use epitaxial matching to stabilize an exemplar system: the pseudo-bcc UMo alloy, which exhibits a significant mismatch between the basis preferred symmetry and the global lattice. Employing diffuse and inelastic x-ray scattering techniques on 300-nm epitaxial films, combined with modeling, the authors discover a new form of correlated disorder which exhibits strong disorder-phonon coupling that dramatically suppresses phonon lifetimes. These findings have implications across a broad range of materials and could be exploited to develop future functional materials.
Yoshiki J. Sato, Fuminori Honda, Arvind Maurya, Yusei Shimizu, Ai Nakamura, Yoshiya Homma, Dexin Li, Yoshinori Haga, and Dai Aoki
Phys. Rev. Materials 5, 034411 (2021) - Published 15 March, 2021
Chirality, which is a fundamental property of symmetry, can produce unique electronic and magnetic properties. The problem is that many of the chiral inorganic compounds form a racemic mixture consisting of right- and left-handed enantiomers. Here, the authors succeeded in growing the enantiopure single crystal of Nd-based monoaxial chiral magnet, demonstrating the nontrivial magnetic phase diagram in this rare-earth chiral magnet with the DM interaction. This ternary rare-earth platinum boride system provides an attractive platform for examining chiral magnetism and the role of DM interaction.
Dalmau Reig-i-Plessis and Alannah M. Hallas
Phys. Rev. Materials 5, 030301 (2021) - Published 29 March, 2021
The pyrochlore lattice is the arrangement of corner sharing tetrahedra, the well-known host of a wide range of exotic phenomena driven by magnetic frustration. Until recently, much of the work in this domain was confined to the oxide pyrochlore family of materials. Recent advancements are bringing the same research focus to several new families of materials where halide or chalcogenide anions replace oxygen. Each of these new families opens up new avenues of research such as allowing new magnetic ions, modifications to the local spin anisotropies, and a re-organization of the magnetic energy scales. In this research update, the authors highlight how these effects have opened new pathways for frustrated magnetism research, with an emphasis on future prospects.
Jimmy-Xuan Shen, Mark E. Turiansky, Darshana Wickramaratne, and Chris G. Van de Walle
Phys. Rev. Materials 5, L030401 (2021) - Published 9 March, 2021
David Codony, Irene Arias, and Phanish Suryanarayana
Phys. Rev. Materials 5, L030801 (2021) - Published 8 March, 2021
Aude Belguise, Sabine Cantournet, François Lequeux, and Hélène Montes
Phys. Rev. Materials 5, 033601 (2021) - Published 3 March, 2021
Sachin V. Muley, Chengrong Cao, Debaditya Chatterjee, Carter Francis, Felix P. Lu, Mark D. Ediger, John H. Perepezko, and Paul M. Voyles
Phys. Rev. Materials 5, 033602 (2021) - Published 3 March, 2021
Nanjun Chen, Danhong Huang, Eric R. Heller, David A. Cardimona, and Fei Gao
Phys. Rev. Materials 5, 033603 (2021) - Published 10 March, 2021
Emily Hwang, Emma Cuddy, Julianne Lin, Jonas L. Kaufman, Adam Shaw, Patrick L. J. Conway, Aurora Pribram-Jones, Kevin J. Laws, and Lori Bassman
Phys. Rev. Materials 5, 033604 (2021) - Published 11 March, 2021
Liangzhao Huang, Maylise Nastar, Thomas Schuler, and Luca Messina
Phys. Rev. Materials 5, 033605 (2021) - Published 15 March, 2021
Sushant Mahat, Sheng Li, Hanlin Wu, Pawan Koirala, Bing Lv, and David G. Cahill
Phys. Rev. Materials 5, 033606 (2021) - Published 16 March, 2021
G. R. Hearne, L. Kapesi, R. M. Erasmus, S. R. Naidoo, and R. Warmbier
Phys. Rev. Materials 5, 033607 (2021) - Published 22 March, 2021
Angeliki Poulou, Thomas A. Mellan, and Michael W. Finnis
Phys. Rev. Materials 5, 033608 (2021) - Published 25 March, 2021
Sami Mahmoud, Philippe Carrez, Marie Landeiro Dos Reis, Normand Mousseau, and Patrick Cordier
Phys. Rev. Materials 5, 033609 (2021) - Published 25 March, 2021
Koki Ueno, Kazuhide Ichikawa, Kosei Sato, Daisuke Sugita, Satoshi Yotsuhashi, and Ichiro Takeuchi
Phys. Rev. Materials 5, 033801 (2021) - Published 19 March, 2021
Xun Liu, Lihao Yang, Zhufeng Hou, Bo Da, Kenji Nagata, Hideki Yoshikawa, Shigeo Tanuma, Yang Sun, and Zejun Ding
Phys. Rev. Materials 5, 033802 (2021) - Published 24 March, 2021
Zachary M. Geballe, Nicholas Holtgrewe, Amol Karandikar, Eran Greenberg, Vitali B. Prakapenka, and Alexander F. Goncharov
Phys. Rev. Materials 5, 033803 (2021) - Published 26 March, 2021
Martin Gren, Erik Fransson, Mattias Ångqvist, Paul Erhart, and Göran Wahnström
Phys. Rev. Materials 5, 033804 (2021) - Published 29 March, 2021
Y. Yekta, H. Hadipour, E. Şaşıoğlu, C. Friedrich, S. A. Jafari, S. Blügel, and I. Mertig
Phys. Rev. Materials 5, 034001 (2021) - Published 1 March, 2021
Lingyu Feng, Akitoshi Shiotari, Keisuke Yabuoshi, Masahiro Fukuda, Taisuke Ozaki, and Yoshiaki Sugimoto
Phys. Rev. Materials 5, 034002 (2021) - Published 9 March, 2021
Busheng Wang and Gilles Frapper
Phys. Rev. Materials 5, 034003 (2021) - Published 12 March, 2021
K. R. Elder, C. V. Achim, V. Heinonen, E. Granato, S. C. Ying, and T. Ala-Nissila
Phys. Rev. Materials 5, 034004 (2021) - Published 12 March, 2021
Jun Deng, Jiangang Guo, Hideo Hosono, Tianping Ying, and Xiaolong Chen
Phys. Rev. Materials 5, 034005 (2021) - Published 15 March, 2021
Tim Anlauf, Marta Prada, Stefan Freercks, Bojan Bosnjak, Robert Frömter, Jonas Sichau, Hans Peter Oepen, Lars Tiemann, and Robert H. Blick
Phys. Rev. Materials 5, 034006 (2021) - Published 16 March, 2021
Alejandro Lopez-Bezanilla
Phys. Rev. Materials 5, 034007 (2021) - Published 17 March, 2021
F. Fabre, A. Finco, A. Purbawati, A. Hadj-Azzem, N. Rougemaille, J. Coraux, I. Philip, and V. Jacques
Phys. Rev. Materials 5, 034008 (2021) - Published 24 March, 2021
Armin Taheri and Chandra Veer Singh
Phys. Rev. Materials 5, 034009 (2021) - Published 29 March, 2021
Topojit Debnath, Bishwajit Debnath, and Roger K. Lake
Phys. Rev. Materials 5, 034010 (2021) - Published 29 March, 2021
V. M. Pereira, C. N. Wu, L. H. Tjeng, and S. G. Altendorf
Phys. Rev. Materials 5, 034201 (2021) - Published 18 March, 2021
S. P. M. Curley, R. Scatena, R. C. Williams, P. A. Goddard, P. Macchi, T. J. Hicken, T. Lancaster, F. Xiao, S. J. Blundell, V. Zapf, J. C. Eckert, E. H. Krenkel, J. A. Villa, M. L. Rhodehouse, and J. L. Manson
Phys. Rev. Materials 5, 034401 (2021) - Published 3 March, 2021
D. P. Kozlenko, V. Yu. Yushankhai, R. Hayn, M. Richter, N. O. Golosova, S. E. Kichanov, E. V. Lukin, and B. N. Savenko
Phys. Rev. Materials 5, 034402 (2021) - Published 4 March, 2021
Stuart R. Burns, Oliver Paull, Ralph Bulanadi, Christie Lau, Daniel Sando, J. Marty Gregg, and Nagarajan Valanoor
Phys. Rev. Materials 5, 034404 (2021) - Published 9 March, 2021
Gaoshang Gong, Longmeng Xu, Yuming Bai, Yongqiang Wang, Songliu Yuan, Yong Liu, and Zhaoming Tian
Phys. Rev. Materials 5, 034405 (2021) - Published 9 March, 2021
Sarah Jenkins, Roy. W. Chantrell, and Richard F. L. Evans
Phys. Rev. Materials 5, 034406 (2021) - Published 10 March, 2021
Artem Malyeyev, Ivan Titov, Philipp Bender, Mathias Bersweiler, Vitaliy Pipich, Sebastian Mühlbauer, Semih Ener, Oliver Gutfleisch, and Andreas Michels
Phys. Rev. Materials 5, 034407 (2021) - Published 10 March, 2021
N. Teichert, G. Atcheson, K. Siewierska, M. N. Sanz-Ortiz, M. Venkatesan, K. Rode, S. Felton, P. Stamenov, and J. M. D. Coey
Phys. Rev. Materials 5, 034408 (2021) - Published 11 March, 2021
Seung Woo Jang, Do Hoon Kiem, Juhyeok Lee, Yoon-Gu Kang, Hongkee Yoon, and Myung Joon Han
Phys. Rev. Materials 5, 034409 (2021) - Published 12 March, 2021
Amitava Banerjee, Aaron A. Kohnert, Edward F. Holby, and Blas P. Uberuaga
Phys. Rev. Materials 5, 034410 (2021) - Published 15 March, 2021
Yoshiki J. Sato, Fuminori Honda, Arvind Maurya, Yusei Shimizu, Ai Nakamura, Yoshiya Homma, Dexin Li, Yoshinori Haga, and Dai Aoki
Phys. Rev. Materials 5, 034411 (2021) - Published 15 March, 2021
Chirality, which is a fundamental property of symmetry, can produce unique electronic and magnetic properties. The problem is that many of the chiral inorganic compounds form a racemic mixture consisting of right- and left-handed enantiomers. Here, the authors succeeded in growing the enantiopure single crystal of Nd-based monoaxial chiral magnet, demonstrating the nontrivial magnetic phase diagram in this rare-earth chiral magnet with the DM interaction. This ternary rare-earth platinum boride system provides an attractive platform for examining chiral magnetism and the role of DM interaction.
Chang Bae Park, Kwang Woo Shin, Sae Hwan Chun, Jun Han Lee, Yoon Seok Oh, Steven M. Disseler, Colin A. Heikes, William D. Ratcliff, Woo-Suk Noh, Jae-Hoon Park, and Kee Hoon Kim
Phys. Rev. Materials 5, 034412 (2021) - Published 16 March, 2021
V. Polewczyk, S. K. Chaluvadi, P. Orgiani, G. Panaccione, G. Vinai, G. Rossi, and P. Torelli
Phys. Rev. Materials 5, 034413 (2021) - Published 19 March, 2021
Fangyuan Gu, Éamonn Murray, and Paul Tangney
Phys. Rev. Materials 5, 034414 (2021) - Published 19 March, 2021
Roman A. Izmailov, Jack W. Strand, Luca Larcher, Barry J. O'Sullivan, Alexander L. Shluger, and Valeri V. Afanas'ev
Phys. Rev. Materials 5, 034415 (2021) - Published 23 March, 2021
T. Kihara, T. Roy, X. Xu, A. Miyake, M. Tsujikawa, H. Mitamura, M. Tokunaga, Y. Adachi, T. Eto, and T. Kanomata
Phys. Rev. Materials 5, 034416 (2021) - Published 23 March, 2021
Luis Casillas-Trujillo, Rickard Armiento, and Björn Alling
Phys. Rev. Materials 5, 034417 (2021) - Published 23 March, 2021
Y. S. Chen, J. G. Lin, S. Singh, Kaustav Manna, Gerhard H. Fecher, and Claudia Felser
Phys. Rev. Materials 5, 034418 (2021) - Published 26 March, 2021
Loi T. Nguyen, Daniel B. Straus, Q. Zhang, and R. J. Cava
Phys. Rev. Materials 5, 034419 (2021) - Published 31 March, 2021
Khang Hoang
Phys. Rev. Materials 5, 034601 (2021) - Published 4 March, 2021
Stefan A. Seidl, Bernhard Kretz, Christian Gehrmann, and David A. Egger
Phys. Rev. Materials 5, 034602 (2021) - Published 5 March, 2021
Brenden R. Ortiz, Paul M. Sarte, Eric M. Kenney, Michael J. Graf, Samuel M. L. Teicher, Ram Seshadri, and Stephen D. Wilson
Phys. Rev. Materials 5, 034801 (2021) - Published 2 March, 2021
Yanan Li, Ziqiao Wang, Run Xiao, Qi Li, Ke Wang, Anthony Richardella, Jian Wang, and Nitin Samarth
Phys. Rev. Materials 5, 034802 (2021) - Published 22 March, 2021
C. Mielke, III, Y. Qin, J.-X. Yin, H. Nakamura, D. Das, K. Guo, R. Khasanov, J. Chang, Z. Q. Wang, S. Jia, S. Nakatsuji, A. Amato, H. Luetkens, G. Xu, M. Z. Hasan, and Z. Guguchia
Phys. Rev. Materials 5, 034803 (2021) - Published 29 March, 2021
Elmeri Österlund, Glenn Ross, Miguel A. Caro, Mervi Paulasto-Kröckel, Andreas Hollmann, Manuela Klaus, Matthias Meixner, Christoph Genzel, Panu Koppinen, Tuomas Pensala, Agnė Žukauskaitė, and Michal Trebala
Phys. Rev. Materials 5, 035001 (2021) - Published 2 March, 2021
Xin-Ling He, Shu-Ning Pan, Yue Chen, Xiao-Ji Weng, Zifan Wang, Dongli Yu, Xiao Dong, Jian Sun, Yongjun Tian, and Xiang-Feng Zhou
Phys. Rev. Materials 5, 035002 (2021) - Published 2 March, 2021
Sizhe Liu and Kyle C. Smith
Phys. Rev. Materials 5, 035003 (2021) - Published 8 March, 2021
D. Chaney, A. Castellano, A. Bosak, J. Bouchet, F. Bottin, B. Dorado, L. Paolasini, S. Rennie, C. Bell, R. Springell, and G. H. Lander
Phys. Rev. Materials 5, 035004 (2021) - Published 30 March, 2021
Many desirable material properties may be associated with disorder exhibiting local periodicity or correlations. However, few systems allow systematic studies into the effects of intrinsic crystallographic conflict on correlated disorder. The authors use epitaxial matching to stabilize an exemplar system: the pseudo-bcc UMo alloy, which exhibits a significant mismatch between the basis preferred symmetry and the global lattice. Employing diffuse and inelastic x-ray scattering techniques on 300-nm epitaxial films, combined with modeling, the authors discover a new form of correlated disorder which exhibits strong disorder-phonon coupling that dramatically suppresses phonon lifetimes. These findings have implications across a broad range of materials and could be exploited to develop future functional materials.
Marc Reynaud, Pei-Yu Chen, Wente Li, Therese Paoletta, Sunah Kwon, Dae Hun Lee, Ilya Beskin, Agham B. Posadas, Moon J. Kim, Chad M. Landis, Keji Lai, John G. Ekerdt, and Alexander A. Demkov
Phys. Rev. Materials 5, 035201 (2021) - Published 19 March, 2021
Angela Cleri, John Tomko, Kathleen Quiambao-Tomko, Mario V. Imperatore, Yanglin Zhu, J. Ryan Nolen, Joshua Nordlander, Joshua D. Caldwell, Zhiqiang Mao, Noel C. Giebink, Kyle P. Kelley, Evan L. Runnerstrom, Patrick E. Hopkins, and Jon-Paul Maria
Phys. Rev. Materials 5, 035202 (2021) - Published 24 March, 2021
M. Soroka, K. Knížek, Z. Jirák, P. Levinský, M. Jarošová, J. Buršik, and J. Hejtmánek
Phys. Rev. Materials 5, 035401 (2021) - Published 1 March, 2021
Suzanne K. Wallace, Anton S. Bochkarev, Ambroise van Roekeghem, Javier Carrasco, Alexander Shapeev, and Natalio Mingo
Phys. Rev. Materials 5, 035402 (2021) - Published 1 March, 2021
Michael J. Watts, Peter Hatton, Roger Smith, Tom Fiducia, Ali Abbas, Rachael Greenhalgh, John M. Walls, and Pooja Goddard
Phys. Rev. Materials 5, 035403 (2021) - Published 3 March, 2021
Bongjae Kim, Kyoo Kim, and Sooran Kim
Phys. Rev. Materials 5, 035404 (2021) - Published 5 March, 2021
Yuhang Liang, Xiangyuan Cui, Feng Li, Catherine Stampfl, Simon P. Ringer, and Rongkun Zheng
Phys. Rev. Materials 5, 035405 (2021) - Published 12 March, 2021
Simon Daubner, P G Kubendran Amos, Ephraim Schoof, Jay Santoki, Daniel Schneider, and Britta Nestler
Phys. Rev. Materials 5, 035406 (2021) - Published 18 March, 2021
Poulumi Dey and Biswanath Dutta
Phys. Rev. Materials 5, 035407 (2021) - Published 22 March, 2021
Giuliana Materzanini, Leonid Kahle, Aris Marcolongo, and Nicola Marzari
Phys. Rev. Materials 5, 035408 (2021) - Published 22 March, 2021
Valerio Campanari, Antonio Agresti, Sara Pescetelli, Aswathi K. Sivan, Daniele Catone, Patrick O'Keeffe, Stefano Turchini, Aldo Di Carlo, and Faustino Martelli
Phys. Rev. Materials 5, 035409 (2021) - Published 26 March, 2021
M. Molina-Ruiz, Y. J. Rosen, H. C. Jacks, M. R. Abernathy, T. H. Metcalf, X. Liu, J. L. DuBois, and F. Hellman
Phys. Rev. Materials 5, 035601 (2021) - Published 3 March, 2021
Anthony E. Phillips, Matteo Baggioli, Timothy W. Sirk, Kostya Trachenko, and Alessio Zaccone
Phys. Rev. Materials 5, 035602 (2021) - Published 5 March, 2021
Antara Pal, Md. Arif Kamal, Thomas Zinn, Jan K. G. Dhont, and Peter Schurtenberger
Phys. Rev. Materials 5, 035603 (2021) - Published 11 March, 2021
Jeffrey L. Braun, Sean W. King, Eric R. Hoglund, Mehrdad Abbasi Gharacheh, Ethan A. Scott, Ashutosh Giri, John A. Tomko, John T. Gaskins, Ahmad Al-kukhun, Gyanendra Bhattarai, Michelle M. Paquette, Georges Chollon, Benjamin Willey, G. Andrew Antonelli, David W. Gidley, Jinwoo Hwang, James M. Howe, and Patrick E. Hopkins
Phys. Rev. Materials 5, 035604 (2021) - Published 23 March, 2021