P. A. Stuermer, D. Wirtitsch, T. Steidl, R. Wörnle, J. Körber, W. Schustereder, C. Zmoelnig, P. Urlesberger, F. Chiapolino, S. Meinardi, K. Edelmann, M. Kern, J. Anders, S. Krainer, H. Heiss, M. Trupke, and J. Wrachtrup
Phys. Rev. Applied 26, 044002 (2026) - Published 1 October, 2026
SiC-based quantum magnetometry is vital for advanced sensing fields because it offers a path to volume-compatible chips, but it is held back because its sensitivity is lower than other platforms like N-V diamond color centers. This study uses a planar 4H-SiC waveguide platform and wafer-scale fabrication to seamlessly integrate and excite large V2 ensembles. Notably, this streamlined layout achieves a shot-noise limit of 30 nT/√Hz, boosting sensitivity by 2–3 orders of magnitude over that of standard, confocal SiC methods while preserving coherent control.
Maciej Dąbrowski, Tong Wu, Connor R. J. Sait, Jia Xu, Paul S. Keatley, Yizheng Wu, Robert J. Hicken, and Olena Gomonay
Phys. Rev. Applied 26, 044008 (2026) - Published 2 October, 2026
Antiferromagnets are promising for fast, energy-efficient, high-density memory technologies, but their compensated spins make their domains difficult to image and control optically. The authors use magneto-optical birefringence imaging to show that a Pt capping layer enables ultrafast laser pulses to modify domains in insulating NiO and CoO films. Sweeping the beam generates a thermal gradient that drives domain walls toward colder regions, producing partial switching that can be reversed by changing the sweep direction. These findings provide a path toward optically controlled antiferromagnetic memory devices.
Yufan Wang, Yi Huang, Jiarui Niu, Shuai Zhang, Mengdi Yin, Hongna Gu, Zeyi Zhu, Haotian Duan, Xiao Xiao, Lina Chen, Yongbing Xu, and Ronghua Liu
Phys. Rev. Applied 26, 044001 (2026) - Published 1 October, 2026
P. A. Stuermer, D. Wirtitsch, T. Steidl, R. Wörnle, J. Körber, W. Schustereder, C. Zmoelnig, P. Urlesberger, F. Chiapolino, S. Meinardi, K. Edelmann, M. Kern, J. Anders, S. Krainer, H. Heiss, M. Trupke, and J. Wrachtrup
Phys. Rev. Applied 26, 044002 (2026) - Published 1 October, 2026
SiC-based quantum magnetometry is vital for advanced sensing fields because it offers a path to volume-compatible chips, but it is held back because its sensitivity is lower than other platforms like N-V diamond color centers. This study uses a planar 4H-SiC waveguide platform and wafer-scale fabrication to seamlessly integrate and excite large V2 ensembles. Notably, this streamlined layout achieves a shot-noise limit of 30 nT/√Hz, boosting sensitivity by 2–3 orders of magnitude over that of standard, confocal SiC methods while preserving coherent control.
Jingyi Zhu, Tao Yuan, Wenbing Tang, Wenjie He, Zhengwen Qi, Jinhong Liao, Xin Su, Fangming Li, Xiaoai Yang, Jing Liu, Guoliang Yuan, Xiubao Sui, Kai Chen, and Weijie Guo
Phys. Rev. Applied 26, 044003 (2026) - Published 1 October, 2026
Takuya Yoshioka, Keita Sasada, Riku Usuki, Yuichiro Nakano, and Keisuke Fujii
Phys. Rev. Applied 26, 044004 (2026) - Published 1 October, 2026
Zeheng Huang, Mian Peng, Aowei Yang, Yongzhi Tian, Qiang Wei, and Gang Chen
Phys. Rev. Applied 26, 044006 (2026) - Published 2 October, 2026
Yapeng Dou, Yihua Zhong, Lingli Ba, Jianmin Zhao, Dongyang Wang, Quan Li, Junliang Yang, and Quanlong Yang
Phys. Rev. Applied 26, 044007 (2026) - Published 2 October, 2026
Maciej Dąbrowski, Tong Wu, Connor R. J. Sait, Jia Xu, Paul S. Keatley, Yizheng Wu, Robert J. Hicken, and Olena Gomonay
Phys. Rev. Applied 26, 044008 (2026) - Published 2 October, 2026
Antiferromagnets are promising for fast, energy-efficient, high-density memory technologies, but their compensated spins make their domains difficult to image and control optically. The authors use magneto-optical birefringence imaging to show that a Pt capping layer enables ultrafast laser pulses to modify domains in insulating NiO and CoO films. Sweeping the beam generates a thermal gradient that drives domain walls toward colder regions, producing partial switching that can be reversed by changing the sweep direction. These findings provide a path toward optically controlled antiferromagnetic memory devices.
Huijie Ma, Ziyu He, Jianan Fang, Yanan Li, Ruiyang Qin, Wen Zhang, Jixi Zhang, Min Peng, Zhuohang Wei, Kun Huang, and Heping Zeng
Phys. Rev. Applied 26, 044009 (2026) - Published 2 October, 2026
Vinaya K. Kavatamane, Dewen Duan, Hadi Zadeh-Haghighi, Manh-Huong Phan, and Gopalakrishnan Balasubramanian
Phys. Rev. Applied 26, 044010 (2026) - Published 2 October, 2026