• High Power Laser and Particle Beams
  • Vol. 34, Issue 10, 104006 (2022)
Wangsheng Chu, Guobin Zhang, Zhe Sun, Zhenlin Luo, Ningdong Huang, Shancai Zhang, Guangyao Feng*, and Xiaosong Liu*
Author Affiliations
  • National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei 230029, China
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    DOI: 10.11884/HPLPB202234.220122 Cite this Article
    Wangsheng Chu, Guobin Zhang, Zhe Sun, Zhenlin Luo, Ningdong Huang, Shancai Zhang, Guangyao Feng, Xiaosong Liu. Brief introduction of low-energy diffraction limited storage-ring-based synchrotron radiation and its applications[J]. High Power Laser and Particle Beams, 2022, 34(10): 104006 Copy Citation Text show less
    Comparison of light spot cross section between 3rd generation storage rings and 4th generation diffraction-limited storage rings
    Fig. 1. Comparison of light spot cross section between 3rd generation storage rings and 4th generation diffraction-limited storage rings
    Schematic diagram of XPCS and its temporal-spatial resolution compared with other techniques[13]
    Fig. 2. Schematic diagram of XPCS and its temporal-spatial resolution compared with other techniques[13]
    Schematic diagram of STXM and ptychography
    Fig. 3. Schematic diagram of STXM and ptychography
    Sketch of principle of various X-ray spectroscopic techniques based on synchrotron radiation[25]
    Fig. 4. Sketch of principle of various X-ray spectroscopic techniques based on synchrotron radiation[25]
    Sketch of principle of various X-ray spectroscopic techniques based on synchrotron radiation[32]
    Fig. 5. Sketch of principle of various X-ray spectroscopic techniques based on synchrotron radiation[32]
    Characterization of electronic structure of quantum materials by ARPES
    Fig. 6. Characterization of electronic structure of quantum materials by ARPES
    High density racetrack memory based on domain walls and domain dynamics in antiferromagnetic metals[60-64]
    Fig. 7. High density racetrack memory based on domain walls and domain dynamics in antiferromagnetic metals[60-64]
    Real and imaginary absorption, energy-dependent RSoXS and the corresponding morphology model of three polymer blocks[11]
    Fig. 8. Real and imaginary absorption, energy-dependent RSoXS and the corresponding morphology model of three polymer blocks[11]
    Enhanced X-ray wave amplitude at the surface or interface of films or heterostructures due to standing wave effect of X-rayangularreflection[84]
    Fig. 9. Enhanced X-ray wave amplitude at the surface or interface of films or heterostructures due to standing wave effect of X-rayangularreflection[84]
    Decay of capillary waves in entangled PS films observed by using XPCS[85]
    Fig. 10. Decay of capillary waves in entangled PS films observed by using XPCS[85]
    SR lights provide versatile X-ray spectroscopic techniques, such as sXAS, XES and RIXS, to describe the electronic structure changes of electrode materials during charge and discharge, and guide the synthesis of materials and the optimization of their performance
    Fig. 11. SR lights provide versatile X-ray spectroscopic techniques, such as sXAS, XES and RIXS, to describe the electronic structure changes of electrode materials during charge and discharge, and guide the synthesis of materials and the optimization of their performance
    Near-ambient pressure XPS characterization for water-gas reaction and Fischer-Tropsch reaction
    Fig. 12. Near-ambient pressure XPS characterization for water-gas reaction and Fischer-Tropsch reaction
    In-situ catalytic mass spectrometry in Hefei Light Source and its representative research results
    Fig. 13. In-situ catalytic mass spectrometry in Hefei Light Source and its representative research results
    Chemical mechanism of AgNPs toxicity to human monocytes[113]
    Fig. 14. Chemical mechanism of AgNPs toxicity to human monocytes[113]
    Component analysis of secondary aerosol samples from different cities in China[119]
    Fig. 15. Component analysis of secondary aerosol samples from different cities in China[119]
    Effect of particle size on the single-chain dynamics, taking PEO composites with a fraction of 1% Au nanoparticles as a model, by using XPCS[127]
    Fig. 16. Effect of particle size on the single-chain dynamics, taking PEO composites with a fraction of 1% Au nanoparticles as a model, by using XPCS[127]
    Combustion reaction dynamics simulation for aero-engine and its potential applications[136]
    Fig. 17. Combustion reaction dynamics simulation for aero-engine and its potential applications[136]
    Wangsheng Chu, Guobin Zhang, Zhe Sun, Zhenlin Luo, Ningdong Huang, Shancai Zhang, Guangyao Feng, Xiaosong Liu. Brief introduction of low-energy diffraction limited storage-ring-based synchrotron radiation and its applications[J]. High Power Laser and Particle Beams, 2022, 34(10): 104006
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