; A Roadmap for Quantum Interconnects.” A technical report from QNEXT. https://doi.org/10.2172/1900586 (2022).
Quantifying NV-center Spectral Diffusion by Symmetry
B. A. McCullian, H. F. H. Cheung, H. Y. Chen, and G. D. Fuchs, “Quantifying the Spectral Diffusion of N-V Centers by Symmetry,” Phys. Rev. Appl. 18, 064011 (2022). [arXiv:2206.11362]
Lorentz electron ptychography for imaging magnetic textures beyond the diffraction limit
Zhen Chen, Emrah Turgut, Yi Jiang, Kayla X. Nguyen, Matthew J. Stolt, Song Jin, Daniel C. Ralph, Gregory D. Fuchs, and David A. Muller, “Lorentz electron ptychography for imaging magnetic textures beyond the diffraction limit,” Nat. Nanotech. 17, 1165–1170 (2022).
Excited-state spin-resonance spectroscopy of VB- defect centers in hexagonal boron nitride
N. Mathur*, A. Mukherjee*, X. Gao, J. Luo, B. A. McCullian, T. Li, A. N. Vamivakas, and G. D. Fuchs, “Excited-state spin-resonance spectroscopy of V_B^- defect centers in hexagonal boron nitride” Nat. Commun. 13, 3233 (2022) [arXiv: 2111.10855] *Equal co-authors
Disentangling Magnetic and Grain Contrast in FeGe Thin Films Using Four-Dimensional Lorentz Scanning Transmission Electron Microscopy
X. Nguyen, X. S. Zhang, E. Turgut, M. C. Cao, J. Glaser, Z. Chen, M. J. Stolt, C. S. Chang, Y.-T. Shao, S. Jin, G. D. Fuchs, and D. A. Muller, “Disentangling Magnetic and Grain Contrast in FeGe Thin Films Using Four-Dimensional Lorentz Scanning Transmission Electron Microscopy” Phys. Rev. Appl. 17, 034066 (2022).
Quantum science and technology based on color centers with accessible spin
Marcus W. Doherty, Chunhui Rita Du, and Gregory D. Fuchs, “Quantum science and technology based on color centers with accessible spin.” J. Appl. Phys. 131, 010401 (2022). [Guest editorial in a special topic of the same name]