Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials

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Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials. / Ye, Ran; Zhang, Xiangyu; Zhi, Lingjie et al.
In: Optics Letters, Vol. 50, No. 3, 01.2025, p. 908-911.

Research output: Contribution to journalArticlepeer-review

HarvardHarvard

Ye, R, Zhang, X, Zhi, L, Cao, Y, Melinte, S, Wang, Z & Yang, S 2025, 'Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials', Optics Letters, vol. 50, no. 3, pp. 908-911.

APA

Ye, R., Zhang, X., Zhi, L., Cao, Y., Melinte, S., Wang, Z., & Yang, S. (2025). Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials. Optics Letters, 50(3), 908-911.

CBE

Ye R, Zhang X, Zhi L, Cao Y, Melinte S, Wang Z, Yang S. 2025. Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials. Optics Letters. 50(3):908-911.

MLA

VancouverVancouver

Ye R, Zhang X, Zhi L, Cao Y, Melinte S, Wang Z et al. Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials. Optics Letters. 2025 Jan;50(3):908-911.

Author

Ye, Ran ; Zhang, Xiangyu ; Zhi, Lingjie et al. / Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials. In: Optics Letters. 2025 ; Vol. 50, No. 3. pp. 908-911.

RIS

TY - JOUR

T1 - Microsphere-assisted super-resolution polarized light microscopy for polarization-sensitive materials

AU - Ye, Ran

AU - Zhang, Xiangyu

AU - Zhi, Lingjie

AU - Cao, Yurong

AU - Melinte, Sorin

AU - Wang, Zengbo (James )

AU - Yang, Songlin

PY - 2025/1

Y1 - 2025/1

N2 - Polarization sensitivity is a fundamental phenomenon observed in nature, and its application is vital for advancing scientific discoveries. Here, we present a microsphere-assisted polarized light microscopy method that enables high-quality, label-free super-resolution imaging of polarization-sensitive materials. We investigated the imaging performance of this method using various samples, including colloidal crystals and grating structures. Both simulations and experiments were performed to explore the underlying physical mechanisms driving the enhancement in imaging quality. The results of this work have potential values for the fields of polarized light microscopy and super-resolution imaging.

AB - Polarization sensitivity is a fundamental phenomenon observed in nature, and its application is vital for advancing scientific discoveries. Here, we present a microsphere-assisted polarized light microscopy method that enables high-quality, label-free super-resolution imaging of polarization-sensitive materials. We investigated the imaging performance of this method using various samples, including colloidal crystals and grating structures. Both simulations and experiments were performed to explore the underlying physical mechanisms driving the enhancement in imaging quality. The results of this work have potential values for the fields of polarized light microscopy and super-resolution imaging.

M3 - Article

VL - 50

SP - 908

EP - 911

JO - Optics Letters

JF - Optics Letters

SN - 0146-9592

IS - 3

ER -