X-ray phase-contrast imaging allows for non-invasive analysis in low-absorbing materials, such as soft tissue. Its application in medical or materials science has yet to be realized on a wider scale due to the requirements on the X-ray source, demanding high flux and small source size. Laser wakefield accelerators generate betatron X-rays fulfilling these criteria and can be suitable sources for phase-contrast imaging. In this work, we present the first phase-contrast images obtained by using ionization injection-based laser wakefield acceleration, which results in a higher photon yield and smoother X-ray beam profile compared to self-injection. A peak photon yield of 1.9 × 1011 ph/sr and a source size of 3 μm were estimated. Furthermore, t...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Between X-ray tubes and large-scale synchrotron sources, a large gap in performance exists with resp...
International audienceDevelopment of x-ray phase contrast imaging applications with a laboratory sca...
X-ray phase-contrast imaging allows for non-invasive analysis in low-absorbing materials, such as so...
X-ray phase-contrast imaging is a powerful technique that allows great resolving power for low absor...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
X-ray phase contrast imaging (X-PCi) is a very promising method of dramatically enhancing the contra...
We show that x-rays from a recently demonstrated table top source of bright, ultrafast, coherent syn...
International audienceThis study explores the ability of a hard K α x-ray source (17.48 keV) produce...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
X-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contrast...
Laser-wakefield accelerators (LWFAs) are high acceleration-gradient plasma-based particle accelerato...
8siX-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contr...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Between X-ray tubes and large-scale synchrotron sources, a large gap in performance exists with resp...
International audienceDevelopment of x-ray phase contrast imaging applications with a laboratory sca...
X-ray phase-contrast imaging allows for non-invasive analysis in low-absorbing materials, such as so...
X-ray phase-contrast imaging is a powerful technique that allows great resolving power for low absor...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
X-ray phase contrast imaging (X-PCi) is a very promising method of dramatically enhancing the contra...
We show that x-rays from a recently demonstrated table top source of bright, ultrafast, coherent syn...
International audienceThis study explores the ability of a hard K α x-ray source (17.48 keV) produce...
Both the laser-plasma wakefield accelerator (LWFA) and X-ray phase-contrast imaging (XPCi) are promi...
X-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contrast...
Laser-wakefield accelerators (LWFAs) are high acceleration-gradient plasma-based particle accelerato...
8siX-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contr...
International audienceHigh intensity femtosecond laser pulses can be used to generate X-ray radiatio...
Between X-ray tubes and large-scale synchrotron sources, a large gap in performance exists with resp...
International audienceDevelopment of x-ray phase contrast imaging applications with a laboratory sca...