xxii List of Figures
11.2 One-dimensional, linear model of research.
233
11.3 Dynamic linear model of technology transfer.
233
11.4 Revised dynamic model of research and technology transfer.
234
11.5 Pasteur quadrant and accelerator science.
235
11.6 The units of quantitative assessments of research in the Pasteur quadrant. 235
11.7 Academia–industry–investor puzzle caused by different motivations of the
three participating groups.
238
11.8 Working on a portfolio of compact X-ray light sources can help in crossing the “Valley of Death” between accelerator science and technological
innovation.
238
11.9 A solution to the academia–industry–investor puzzle — work on three
designs of compact X-ray sources.
239
11.10 The FCC beam energy will be comparable to that of an airplane, while the
beam will need to be focused at the interaction point to micron-scale size
— an analogy with a plane passing through the needle’s eye.
242
11.2 One-dimensional, linear model of research.
233
11.3 Dynamic linear model of technology transfer.
233
11.4 Revised dynamic model of research and technology transfer.
234
11.5 Pasteur quadrant and accelerator science.
235
11.6 The units of quantitative assessments of research in the Pasteur quadrant. 235
11.7 Academia–industry–investor puzzle caused by different motivations of the
three participating groups.
238
11.8 Working on a portfolio of compact X-ray light sources can help in crossing the “Valley of Death” between accelerator science and technological
innovation.
238
11.9 A solution to the academia–industry–investor puzzle — work on three
designs of compact X-ray sources.
239
11.10 The FCC beam energy will be comparable to that of an airplane, while the
beam will need to be focused at the interaction point to micron-scale size
— an analogy with a plane passing through the needle’s eye.
242
