Volume 27, Issue 6 pp. 1477-1484
research papers

Third-order aberration of soft X-ray optical systems with orthogonal and coplanar arrangement of the main planes of elements

Yiqing Cao

Corresponding Author

Yiqing Cao

School of Mechanical and Electrical Engineering, Putian University, Putian, Fujian351100, People's Republic of China

Fujian Laser Precision Machining Engineering Technology Research Center, Putian, Fujian351100, People's Republic of China

Yiqing Cao, e-mail: [email protected]Search for more papers by this author
Zhijuan Shen

Zhijuan Shen

School of Mechanical and Electrical Engineering, Putian University, Putian, Fujian351100, People's Republic of China

School of Opto-electronic and Communication Engineering, Xiamen University of Technology, Xiamen, Fujian361024, People's Republic of China

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Haihe Xie

Haihe Xie

School of Mechanical and Electrical Engineering, Putian University, Putian, Fujian351100, People's Republic of China

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First published: 14 September 2020

Abstract

A third-order aberration analytical analysis method of soft X-ray optical systems with orthogonal and coplanar arrangement of the main planes of elements is proposed. Firstly, the transfer equations of the aperture ray and the principle ray are derived; then, based on the third-order aberration theory with the aperture-ray coordinates on the reference exit wavefront of a plane-symmetric optical system, the aberration expressions contributed by the wave aberration and defocus of this kind of optical system are studied in detail. Finally, the derived aberration calculation expressions are applied to calculate the aberration of two design examples of such types of optical systems; the images are compared with ray-tracing results obtained using the Shadow software to validate the aberration expressions. The study shows that the accuracy of the aberration expressions is satisfactory. The analytical analysis method of aberration is helpful in the design and optimization of the soft X-ray optical systems with orthogonal and coplanar arrangement of the main planes of optical elements.

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