TY - JOUR AU - Titov, S.V. AU - Dowling, W.J. AU - Titov, A.S. AU - Fedorov, A.S. TI - Antiferromagnetic and nutation resonance frequencies of antiferromagnets at an arbitrary strength of the applied dc field JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 9 SN - 0021-8979 DO - 10.1063/5.0196622 UR - https://m2.mtmt.hu/api/publication/34768415 ID - 34768415 LA - English DB - MTMT ER - TY - JOUR AU - Sardar, S. AU - Vagadia, M. AU - Tank, T.M. AU - Sahoo, J. AU - Rana, D.S. TI - Exploring anisotropic phases and spin transport in perovskite heterostructures: Insights into 3d/5d interfaces for antiferromagnetic spintronics JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 8 SN - 0021-8979 DO - 10.1063/5.0181284 UR - https://m2.mtmt.hu/api/publication/34766385 ID - 34766385 LA - English DB - MTMT ER - TY - JOUR AU - Chegdani, Faissal AU - El Mansori, Mohamed TI - Perspectives on the robustness of the mechanical properties assessment of biocomposites JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 8 SP - 1 EP - 24 PG - 24 SN - 0021-8979 DO - 10.1063/5.0189109 UR - https://m2.mtmt.hu/api/publication/34687676 ID - 34687676 AB - Biocomposite materials made of natural plant fibers are becoming a viable alternative to the use of synthetic ones such as glass fibers, thanks to many economic, ecological, and technical benefits. However, their massive use in the industry requires optimal control of their mechanical performances, which constitutes a real scientific issue to be overcome. Indeed, biocomposites suffer from an important variability in their mechanical properties because of their multiscale structure, natural growth conditions, and various processing parameters, in addition to eventual chemical treatments. Biocomposites are also highly sensitive to the surrounding environment in terms of humidity and temperature because of the hydrophilic properties of natural plant fibers. In this context, this Perspective aims to provide a critical look at the influence of the main factors that affect the mechanical properties of biocomposites in order to suggest some possible research outlooks that could contribute to optimizing the control of these mechanical properties and expanding the use of biocomposites in industry. LA - English DB - MTMT ER - TY - JOUR AU - Wang, X. AU - Yang, J. AU - Ying, P. AU - Fan, Z. AU - Zhang, J. AU - Sun, H. TI - Dissimilar thermal transport properties in κ-Ga2O3 and β-Ga2O3 revealed by homogeneous nonequilibrium molecular dynamics simulations using machine-learned potentials JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 6 SN - 0021-8979 DO - 10.1063/5.0185854 UR - https://m2.mtmt.hu/api/publication/34762618 ID - 34762618 LA - English DB - MTMT ER - TY - JOUR AU - Chen, X.C. AU - Li, L. AU - Wang, M.Y. AU - Ren, H. AU - Liu, X.Q. AU - Zeng, G. AU - Yang, G.X. TI - Carrier-induced formation of electrically active boron-interstitial clusters in irradiated boron-doped silicon JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 5 SN - 0021-8979 DO - 10.1063/5.0172704 UR - https://m2.mtmt.hu/api/publication/34743377 ID - 34743377 LA - English DB - MTMT ER - TY - JOUR AU - Makkonen, I. AU - Tuomisto, F. TI - Perspective on defect characterization in semiconductors by positron annihilation spectroscopy JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 4 SN - 0021-8979 DO - 10.1063/5.0180024 UR - https://m2.mtmt.hu/api/publication/34619119 ID - 34619119 N1 - Export Date: 18 February 2024 CODEN: JAPIA Correspondence Address: Makkonen, I.; Department of Physics, P.O. Box 43, Finland; email: ilja.makkonen@helsinki.fi LA - English DB - MTMT ER - TY - JOUR AU - Fakhredine, A. AU - Wawro, A. AU - Autieri, C. TI - Huge Dzyaloshinskii-Moriya interactions in Pt/Co/Re thin films JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 3 SN - 0021-8979 DO - 10.1063/5.0177260 UR - https://m2.mtmt.hu/api/publication/34559759 ID - 34559759 LA - English DB - MTMT ER - TY - JOUR AU - Tian, F. AU - Cao, K. AU - Chen, K. AU - Kong, S. AU - Dai, Z. AU - Zhao, Q. AU - Fang, M. AU - Ke, X. AU - Zhou, C. AU - Zhang, Y. AU - Yang, S. TI - Large magnetic entropy change in Ni-Mn-In-Sb alloys via directional solidification and calculated by first-principles calculations JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 2 SN - 0021-8979 DO - 10.1063/5.0189339 UR - https://m2.mtmt.hu/api/publication/34521550 ID - 34521550 AB - In this work, the magnetocaloric effect in Ni50Mn36In5Sb9 alloy was increased by more than 50% through directional solidification, and the magnetic entropy change increased to 36.2 J kg−1 K−1 under the field of 5 T. The calculated results of differential scanning calorimetry curves confirmed the enhanced entropy change, which also increased from 29.7 to 40.7 J kg−1 K−1. Moreover, first-principles calculations show that the surface formation energy along the L21 (220) plane is the lowest at room temperature, and it is easy to form and undergo martensitic transformation from the (220) crystal plane. Directional solidification causes the alloy to grow basically toward the (220) crystal plane, improve atomic ordering, reduce grain boundaries, and increase grain size. Thereby, the magnetic entropy change is enhanced. © 2024 Author(s). LA - English DB - MTMT ER - TY - JOUR AU - Huang, Y. AU - Jiang, X. AU - Deng, T. AU - Yang, D. AU - Pi, X. TI - Identifying the charge states of carbon vacancies in 4H-SiC by ab initio metadynamics JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 13 SN - 0021-8979 DO - 10.1063/5.0195321 UR - https://m2.mtmt.hu/api/publication/34788665 ID - 34788665 LA - English DB - MTMT ER - TY - JOUR AU - Murzyn, C.M. AU - Allen, D.J. AU - Baca, A.N. AU - Egeln, A.A. AU - Houim, R.W. AU - Guildenbecher, D.R. AU - Marinis, R.T. AU - Welliver, M.C. TI - Advancing thermochemical diagnostics in kilogram-scale explosive fireballs via laser absorption spectroscopy JF - JOURNAL OF APPLIED PHYSICS J2 - J APPL PHYS VL - 135 PY - 2024 IS - 1 SN - 0021-8979 DO - 10.1063/5.0182325 UR - https://m2.mtmt.hu/api/publication/34524331 ID - 34524331 N1 - Sandia National Laboratories, 1515 Eubank Blvd SE, Albuquerque, NM, United States Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL, United States Export Date: 22 January 2024 CODEN: JAPIA Correspondence Address: Murzyn, C.M.; Sandia National Laboratories, 1515 Eubank Blvd SE, United States; email: cmurzyn@sandia.gov LA - English DB - MTMT ER -