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Surface topology and functionality of freeform microlens arrays
Aderneuer, T., Fernandez, O., Karpik, A., Werder, J., Marhöfer, M., Kristiansen, P. M., & Ferrini, R. (2021). Surface topology and functionality of freeform microlens arrays. Optics Express, 29(4), 5033-5042. https://doi.org/10.1364/OE.415453
Experimental determination of nanocomposite grating structures by light- and neutron-diffraction in the multi-wave-coupling regime
Fally, M., Tomita, Y., Fimia, A., Madrigal, R. F., Guo, J., Kohlbrecher, J., & Klepp, J. (2021). Experimental determination of nanocomposite grating structures by light- and neutron-diffraction in the multi-wave-coupling regime. Optics Express, 29(11), 16153-16163. https://doi.org/10.1364/OE.424233
High sensitivity X-ray phase contrast imaging by laboratory grating-based interferometry at high Talbot order geometry
Vila-Comamala, J., Romano, L., Jefimovs, K., Dejea, H., Bonnin, A., Cook, A. C., … Stampanoni, M. (2021). High sensitivity X-ray phase contrast imaging by laboratory grating-based interferometry at high Talbot order geometry. Optics Express, 29(2), 2049-2064. https://doi.org/10.1364/OE.414174
Taking advantage of multiplet structure for lineshape analysis in Fourier space
Beckert, A., Sigg, H., & Aeppli, G. (2020). Taking advantage of multiplet structure for lineshape analysis in Fourier space. Optics Express, 28(17), 24937-24950. https://doi.org/10.1364/OE.395877
Laser-induced inner-shell excitations through direct electron re-collision versus indirect collision
Deng, Y., Zeng, Z., Komm, P., Zheng, Y., Helml, W., Xie, X., … Marcus, G. (2020). Laser-induced inner-shell excitations through direct electron re-collision versus indirect collision. Optics Express, 28(16), 23251-23265. https://doi.org/10.1364/OE.395927
Optical second harmonic generation in LiB<sub>3</sub>O<sub>5 </sub>modulated by intense femtosecond X-ray pulses
Deng, Y., Zerdane, S., Xie, X., Divall, E., Johnson, P. J. M., Arrell, C., … Johnson, S. L. (2020). Optical second harmonic generation in LiB3O5 modulated by intense femtosecond X-ray pulses. Optics Express, 28(8), 11117-11127. https://doi.org/10.1364/OE.388911
Hard X-ray nano-holotomography with a Fresnel zone plate
Flenner, S., Kubec, A., David, C., Storm, M., Schaber, C. F., Vollrath, F., … Hagemann, J. (2020). Hard X-ray nano-holotomography with a Fresnel zone plate. Optics Express, 28(25), 37514 (12 pp.). https://doi.org/10.1364/OE.406074
Spectral µCT with an energy resolving and interpolating pixel detector
Lohse, L. M., Vassholz, M., Töpperwien, M., Jentschke, T., Bergamaschi, A., Chiriotti, S., & Salditt, T. (2020). Spectral µCT with an energy resolving and interpolating pixel detector. Optics Express, 28(7), 9842-9859. https://doi.org/10.1364/OE.385389
Improvement and stabilization of optical hydrogen sensing ability of Au-Pd alloys
Nishijima, Y., Kurotsu, T., Yamasaku, N., Takahashii, H., Kurihara, K., Beni, T., … Juodkazis, S. (2020). Improvement and stabilization of optical hydrogen sensing ability of Au-Pd alloys. Optics Express, 28(17), 25383-25391. https://doi.org/10.1364/OE.398784
Generation of strong-field spectrally tunable terahertz pulses
Ovchinnikov, A. V., Chefonov, O. V., Agranat, M. B., Fortov, V. E., Jazbinsek, M., & Hauri, C. P. (2020). Generation of strong-field spectrally tunable terahertz pulses. Optics Express, 28(23), 33921-33936. https://doi.org/10.1364/OE.405545
Modeling of beam hardening effects in a dual-phase X-ray grating interferometer for quantitative dark-field imaging
Pandeshwar, A., Kagias, M., Wang, Z., & Stampanoni, M. (2020). Modeling of beam hardening effects in a dual-phase X-ray grating interferometer for quantitative dark-field imaging. Optics Express, 28(13), 19187 (18 pp.). https://doi.org/10.1364/OE.395237
Nanoscale dielectric grating polarizers tuned to 4.43 eV for ultraviolet polarimetry
de Marcos, L. R., Leong, O. B., Asmara, T. C., Heussler, S. P., Breese, M. B. H., & Rusydi, A. (2020). Nanoscale dielectric grating polarizers tuned to 4.43 eV for ultraviolet polarimetry. Optics Express, 28(9), 12936-12950. https://doi.org/10.1364/OE.382839
Broadband and narrowband laser-based terahertz source and its application for resonant and non-resonant excitation of antiferromagnetic modes in NiO
Chefonov, O. V., Ovchinnikov, A. V., Hauri, C. P., & Agranat, M. B. (2019). Broadband and narrowband laser-based terahertz source and its application for resonant and non-resonant excitation of antiferromagnetic modes in NiO. Optics Express, 27(19), 27273-27281. https://doi.org/10.1364/OE.27.027273
Ptychographic characterisation of polymer compound refractive lenses manufactured by additive technology
Lyubomirskiy, M., Koch, F., Abrashitova, K. A., Bessonov, V. O., Kokareva, N., Petrov, A., … Schroer, C. G. (2019). Ptychographic characterisation of polymer compound refractive lenses manufactured by additive technology. Optics Express, 27(6), 8639 (12 pp.). https://doi.org/10.1364/OE.27.008639
Three-dimensional focal stack imaging in scanning transmission X-ray microscopy with an improved reconstruction algorithm
Ma, L., Zhang, X., Xu, Z., Späth, A., Xing, Z., Sun, T., & Tai, R. (2019). Three-dimensional focal stack imaging in scanning transmission X-ray microscopy with an improved reconstruction algorithm. Optics Express, 27(5), 7787-7802. https://doi.org/10.1364/OE.27.007787
Alignment methods for nanotomography with deep subpixel accuracy
Odstrčil, M., Holler, M., Raabe, J., & Guizar-Sicairos, M. (2019). Alignment methods for nanotomography with deep subpixel accuracy. Optics Express, 27(25), 36637-36652. https://doi.org/10.1364/OE.27.036637
Towards optimized illumination for high-resolution ptychography
Odstrčil, M., Lebugle, M., Guizar-Sicairos, M., David, C., & Holler, M. (2019). Towards optimized illumination for high-resolution ptychography. Optics Express, 27(10), 14981 (17 pp.). https://doi.org/10.1364/OE.27.014981
Sensitive and stable vector magnetometer for operation in zero and finite fields
Bison, G., Bondar, V., Schmidt-Wellenburg, P., Schnabel, A., & Voigt, J. (2018). Sensitive and stable vector magnetometer for operation in zero and finite fields. Optics Express, 26(13), 17350-17359. https://doi.org/10.1364/OE.26.017350
Chasing quantitative biases in neutron imaging with scintillator-camera detectors: a practical method with black body grids
Boillat, P., Carminati, C., Schmid, F., Grünzweig, C., Hovind, J., Kaestner, A., … Lehmann, E. H. (2018). Chasing quantitative biases in neutron imaging with scintillator-camera detectors: a practical method with black body grids. Optics Express, 26(12), 15769-15784. https://doi.org/10.1364/OE.26.015769
Quantitative region-of-interest tomography using variable field of view
Da Silva, J. C., Guizar-Sicairos, M., Holler, M., Diaz, A., van Bokhoven, J. A., Bunk, O., & Menzel, A. (2018). Quantitative region-of-interest tomography using variable field of view. Optics Express, 26(13), 16752-16768. https://doi.org/10.1364/OE.26.016752
 

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