Dual-wavelength x-ray monochromator
A method for testing a surface includes finding respective first and second critical angles for total external reflection of radiation from an area of the surface at first and second wavelengths. The first and second critical angles are compared to determine an orientation of a tangent to the surface in the area.
1. A crystal monochromator, comprising first and second crystal elements, having respective first and second crystal spacings chosen so that the crystal elements diffract radiation incident thereon at respective first and second wavelengths at a selected Bragg angle, the crystal elements having a common surface of curvature chosen so as to focus the radiation at the first and second wavelengths to a common focal area.
2. A crystal monochromator comprising first and second crystal elements, having respective first and second crystal spacings chosen so that the crystal elements diffract radiation incident thereon at respective first and second wavelengths at a selected Bragg angle, the crystal elements having a curvature chosen so as to focus the radiation at the first and second wavelengths to a common focal area,
wherein the first and second crystal elements comprise first and second crystals having respective front surfaces with the chosen curvature, positioned side by side so that the front surfaces define a common curve.
3. A crystal monochromator comprising first and second crystal elements, having respective first and second crystal spacings chosen so that the crystal elements diffract radiation incident thereon at respective first and second wavelengths at a selected Bragg angle, the crystal elements having a curvature chosen so as to focus the radiation at the first and second wavelengths to a common focal area,
wherein the first crystal element comprises a bulk crystal having a front surface with the chosen curvature, and the second crystal element comprises a thin layer formed on the front surface of the first crystal element.
4. A crystal monochromator, comprising first and second crystal elements, having respective first and second crystal spacings d 1 and d 2 chosen so that the crystal elements diffract radiation incident thereon at respective first and second wavelengths λ 1 and λ 2 at a selected Bragg angle, such that d 2 /d 1 =λ 2 /λ 1 , the crystal elements having a curvature chosen so as to focus the radiation at the first and second wavelengths to a common focal area.