International audienceFor more than 15 years, Imagine Optic have developed Extreme Ultra Violet (EUV) and X-ray Hartmann wavefront sensors for metrology and imaging applications. These sensors are compatible with a wide range of X-ray sources: from synchrotrons, Free Electron Lasers, laser-driven betatron and plasma-based EUV lasers to High Harmonic Generation. In this paper, we first describe the principle of a Hartmann sensor and give some key parameters to design a high-performance sensor. We also present different applications from metrology (for manual or automatic alignment of optics), to soft X-ray source optimization and X-ray imaging
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...
International audienceWe present what we believe to be the first automatic alignment of a synchrotro...
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...
A compact Hartmann wavefront sensor specifically optimized for the EUV spectral range was developed ...
A compact Hartmann wavefront sensor specifically optimized for the EUV spectral range was developed ...
The first part of this chapter comprises setups and results of the determination of wavefront and be...
Wavefront analysis is a fast and reliable technique for the alignment and characterization of optics...
Accurate wavefront aberration measurement are essential for next-generation Extreme Ultraviolet (EUV...
Different types of Hartmann wavefront sensors are presented which are usable for a variety of applic...
Different types of Hartmann wavefront sensors are presented which are usable for a variety of applic...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present what we believe to be the first automatic alignment of a synchrotro...
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...
International audienceWe present what we believe to be the first automatic alignment of a synchrotro...
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...
A compact Hartmann wavefront sensor specifically optimized for the EUV spectral range was developed ...
A compact Hartmann wavefront sensor specifically optimized for the EUV spectral range was developed ...
The first part of this chapter comprises setups and results of the determination of wavefront and be...
Wavefront analysis is a fast and reliable technique for the alignment and characterization of optics...
Accurate wavefront aberration measurement are essential for next-generation Extreme Ultraviolet (EUV...
Different types of Hartmann wavefront sensors are presented which are usable for a variety of applic...
Different types of Hartmann wavefront sensors are presented which are usable for a variety of applic...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present a novel, to the best of our knowledge, Hartmann wave front sensor f...
International audienceWe present what we believe to be the first automatic alignment of a synchrotro...
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...
International audienceWe present what we believe to be the first automatic alignment of a synchrotro...
International audienceWe perform wavefront measurements of high-order harmonics using an extreme-ult...