TY - GEN
T1 - Spintronic terahertz emitter integrated multiple metasurface pattern for terahertz polarization modulation
AU - Bai, Zhongyang
AU - Li, Zhaoying
AU - Sun, Tong
AU - Zhang, Youguang
AU - Wen, Lianggong
N1 - Publisher Copyright:
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only.
PY - 2025/12/15
Y1 - 2025/12/15
N2 - Compact, broadband, and on-chip terahertz (THz) polarization control is still constrained by bulky free-space components and resonance-limited metasurfaces that add integration complexity and coupling loss. In this paper, spintronic THz emitter with metasurface pattern is proposed for polarization-control performance. We benchmark strip and hexagon geometries pattern by rotating magnetic field direction to investigate the modualtion difference. Key results: strip pattern array produces predominantly linear trajectories with very low ellipticity, highlighting high-purity linear emission along a preferred axis. In contrast, hexagon pattern yields stable closed ellipses with axis ratios ∼0.3-0.8 and fourfold symmetry, the principal component peaks are consistently ∼±1.0 (normalized), while off-axis components remain robust at ∼±0.6, enabling near-isotropic, multidirectional polarized emission. The spintronic terahertz emitter integrated microdevice opens a route to scalable, on-chip THz polarization functionality and can be extended with programmable magnetic biasing and active metasurfaces toward reconfigurable vector imaging, chiral sensing, and secure communication.
AB - Compact, broadband, and on-chip terahertz (THz) polarization control is still constrained by bulky free-space components and resonance-limited metasurfaces that add integration complexity and coupling loss. In this paper, spintronic THz emitter with metasurface pattern is proposed for polarization-control performance. We benchmark strip and hexagon geometries pattern by rotating magnetic field direction to investigate the modualtion difference. Key results: strip pattern array produces predominantly linear trajectories with very low ellipticity, highlighting high-purity linear emission along a preferred axis. In contrast, hexagon pattern yields stable closed ellipses with axis ratios ∼0.3-0.8 and fourfold symmetry, the principal component peaks are consistently ∼±1.0 (normalized), while off-axis components remain robust at ∼±0.6, enabling near-isotropic, multidirectional polarized emission. The spintronic terahertz emitter integrated microdevice opens a route to scalable, on-chip THz polarization functionality and can be extended with programmable magnetic biasing and active metasurfaces toward reconfigurable vector imaging, chiral sensing, and secure communication.
KW - Device integration
KW - Geometry influence
KW - Metasurface
KW - Polarization modulation
KW - Spintronic terahertz emitter
UR - https://www.scopus.com/pages/publications/105026758417
U2 - 10.1117/12.3091321
DO - 10.1117/12.3091321
M3 - 会议稿件
AN - SCOPUS:105026758417
T3 - Proceedings of SPIE - The International Society for Optical Engineering
BT - Seventh International Conference on Optoelectronic Science and Materials, ICOSM 2025
A2 - Zou, Chongwen
A2 - Wang, Yonghong
PB - SPIE
T2 - 7th International Conference on Optoelectronic Science and Materials, ICOSM 2025
Y2 - 5 September 2025 through 7 September 2025
ER -