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Cheng-hua Wang

Cheng-hua Wang

Arizona State University · Art and Archaeology

Active 1999–2025

h-index26
Citations2.5k
Papers12636 last 5y
Funding$2.0M

Academic metrics are sourced from OpenAlex and public funding records; values may differ from Google Scholar.

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About

Cheng-hua Wang is an associate professor of Art and Archaeology at Princeton University, specializing in Chinese painting and visual culture. She joined the department in 2016 and previously served as an Associate Research Fellow at the Institute of Modern History, Academia Sinica in Taipei. Wang earned her B.A. in history and M.A. in Chinese art history from National Taiwan University, and her Ph.D. in Chinese art history from Yale University in 1998. Her scholarly work has been published widely in both Chinese and English, with her Chinese publications collected in the volume titled Art, Power, and Consumption: One Perspective on the History of Chinese Art. Her English articles have appeared in prominent journals such as The Art Bulletin, Artibus Asiae, Orientations, and Nan Nü, and she has participated in international discussions on art history. Wang's research focuses on traditional Chinese painting, especially Chinese scroll paintings, and she is engaged in projects exploring themes like Qingming shanghe and eighteenth-century city views in China. She plans to continue her work on the materiality of Chinese paintings and on exhibition culture and heritage preservation, including a forthcoming book on the history of the Palace Museum in early twentieth-century China.

Research topics

  • Materials science
  • Optoelectronics
  • Nanotechnology
  • Computer science
  • Optics

Selected publications

  • Chip-integrated metasurface full-Stokes polarimetric imaging sensor

    Light Science & Applications · 2023-09-06 · 149 citations

    articleOpen access

    Polarimetric imaging has a wide range of applications for uncovering features invisible to human eyes and conventional imaging sensors. Chip-integrated, fast, cost-effective, and accurate full-Stokes polarimetric imaging sensors are highly desirable in many applications, which, however, remain elusive due to fundamental material limitations. Here we present a chip-integrated Metasurface-based Full-Stokes Polarimetric Imaging sensor (MetaPolarIm) realized by integrating an ultrathin (~600 nm) met…

  • Scalable Nanoimprint Manufacturing of Functional Multilayer Metasurface Devices

    Advanced Functional Materials · 2024-06-16 · 40 citations

    articleOpen accessSenior authorCorresponding

    Abstract Optical metasurfaces, consisting of subwavelength‐scale meta‐atom arrays, hold great promise of overcoming the fundamental limitations of conventional optics. Due to their structural complexity, metasurfaces usually require high‐resolution yet slow and expensive fabrication processes. Here, using a metasurface polarimetric imaging device as an example, the photonic structures and the Nanoimprint lithography (NIL) processes are designed, creating two separate NIL molds over a patterning…

  • A Novel Low-g MEMS Bistable Inertial Switch With Self-Locking and Reverse-Unlocking Functions

    Journal of Microelectromechanical Systems · 2020-10-29 · 32 citations

    article

    Based on a bistable mechanism, a novel low-g MEMS inertial switch with dual functions of self-locking and reverse-unlocking is presented, along with its fabrication and verification. This MEMS switch is fabricated on a Silicon-On-Insulator (SOI) wafer by using deep reactive ion etching (DRIE), Bosch processing, and wafer bonding technologies. A two-level system is proposed to realize dual functions of this switch, which mainly consists of a spring-mass-damping system as the first level and a bis…

  • Printing continuous metal structures via polymer-assisted photochemical deposition

    Materials Today · 2020-03-25 · 29 citations

    articleSenior authorCorresponding
  • Metasurface‐Based Mueller Matrix Microscope

    Advanced Functional Materials · 2024-06-05 · 14 citations

    articleOpen access

    Abstract In conventional optical microscopes, image contrast of objects mainly results from the differences in light intensity and/or color. Muller matrix optical microscopes (MMMs), on the other hand, can provide significantly enhanced image contrast and rich information about objects by analyzing their interactions with polarized light. However, state‐of‐the‐art MMMs are fundamentally limited by bulky and slow polarization state generators and analyzers. Here, the study demonstrates a metasurf…

Recent grants

Frequent coauthors

  • Yu Yao

    Tongji University

    22 shared
  • Litian Liu

    Hebei General Hospital

    20 shared
  • Tian‐Ling Ren

    Tsinghua University

    19 shared
  • Jiawei Zuo

    National University of Singapore

    16 shared
  • Zheyao Wang

    Beijing Advanced Sciences and Innovation Center

    15 shared
  • Yiping Zhu

    Tsinghua University

    15 shared
  • Xiahui Chen

    15 shared
  • Shinhyuk Choi

    Arizona State University

    12 shared

Education

  • Ph.D., Electrical Engineering

    Princeton University

    2012
  • Master of Engineering, Institute of Microelectronics

    Tsinghua University

    2006
  • Bachelor, Electronic Engineering

    Tsinghua University

    2003

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