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  1. No Access

    Article

    Single-particle structure determination by correlations of snapshot X-ray diffraction patterns

    Diffractive imaging with free-electron lasers allows structure determination from ensembles of weakly scattering identical nanoparticles. The ultra-short, ultra-bright X-ray pulses provide snapshots of the ran...

    D. Starodub, A. Aquila, S. Bajt, M. Barthelmess, A. Barty in Nature Communications (2012)

  2. Article

    Erratum: Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight

    Nature 486, 513–517 (2012); doi:10.1038/nature11222 In this Letter, author M. S. Hunter was incorrectly listed as M. M. Hunter; this has been corrected online in the PDF and HTML of the original paper.

    N. D. Loh, C. Y. Hampton, A. V. Martin, D. Starodub, R. G. Sierra, A. Barty in Nature (2012)

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    Article

    Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight

    Intense, coherent X-ray pulses from a free-electron laser can be used to obtain high-resolution morphology of individual sub-micrometre particles in their native state, while at the same time their composition...

    N. D. Loh, C. Y. Hampton, A. V. Martin, D. Starodub, R. G. Sierra, A. Barty in Nature (2012)

  4. No Access

    Chapter

    Simulated performance of dedicated Ge-strip Compton telescopes as γ-lens focal plane instrumentation

    With focusing of gamma rays in the nuclear-line energy regime starting to establish itself as a feasible and very promising approach for high-sensitivity γ-ray (line) studies of individual sources, optimizing the...

    C. B. Wunderer, P. von Ballmoos, N. Barrière in Focusing Telescopes in Nuclear Astrophysics (2006)

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    Chapter

    MAX, a Laue diffraction lens for nuclear astrophysics

    The next generation of instrumentation for nuclear astrophysics will have to achieve a factor of 10–100 improvement in sensitivity over present technologies. With the focusing gamma-ray telescope MAX we take u...

    N. Barrière, P. von Ballmoos, H. Halloin in Focusing Telescopes in Nuclear Astrophysics (2006)

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    Chapter

    Monte Carlo study of detector concepts for the MAX Laue lens gamma-ray telescope

    MAX is a proposed Laue lens gamma-ray telescope taking advantage of Bragg diffraction in crystals to concentrate incident photons onto a distant detector. The Laue lens and the detector are carried by two sepa...

    G. Weidenspointner, C. B. Wunderer in Focusing Telescopes in Nuclear Astrophysics (2006)

  7. No Access

    Article

    Monte Carlo study of detector concepts for the MAX Laue lens gamma-ray telescope

    MAX is a proposed Laue lens gamma-ray telescope taking advantage of Bragg diffraction in crystals to concentrate incident photons onto a distant detector. The Laue lens and the detector are carried by two sepa...

    G. Weidenspointner, C. B. Wunderer, N. Barrière, A. Zoglauer in Experimental Astronomy (2005)

  8. No Access

    Article

    Simulated performance of dedicated Ge-strip Compton telescopes as γ-lens focal plane instrumentation

    With focusing of gamma rays in the nuclear-line energy regime starting to establish itself as a feasible and very promising approach for high-sensitivity γ-ray (line) studies of individual sources, optimizing ...

    C. B. Wunderer, P. von Ballmoos, N. Barrière, S. E. Boggs in Experimental Astronomy (2005)

  9. No Access

    Article

    MAX, a Laue diffraction lens for nuclear astrophysics

    The next generation of instrumentation for nuclear astrophysics will have to achieve a factor of 10–100 improvement in sensitivity over present technologies. With the focusing gamma-ray telescope MAX we take u...

    N. Barrière, P. von Ballmoos, H. Halloin, N. Abrosimov in Experimental Astronomy (2005)