A correction for non-perpendicularity between the beam axis and the tilt axis in electron tomographic tilt series has been implemented in the IMOD software package and its value and limitations have been explored. Correction for this effect can provide a significant improvement in the alignment error and the reconstruction quality in some cases. However, when the projection model being fit includes an anisotropic shrinkage (i.e. stretch) in the plane of the specimen, adding a variable for the beam tilt does not produce a lower alignment error; it is thus not possible to distinguish between the effects of stretch and beam tilt. Test reconstructions indicate that an alignment solution that includes stretch will adequately correct for the effects of a beam tilt. For specimens subject to deformation under the beam, an alignment solution that accounts for stretch is preferable to one that accounts for beam tilt instead, provided that the markers used for alignment are sufficiently well distributed. Otherwise, a correction for beam tilt should be used.
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http://dx.doi.org/10.1111/j.1365-2818.2008.01977.x | DOI Listing |
J Opt Soc Am A Opt Image Sci Vis
August 2024
In the pinhole point diffraction interferometer (PPDI), proper alignment between the reflection spot of the tested component and the pinhole is critical to obtain accurate interferograms. At present, adjusting for tilt error requires manual manipulation, and defocus error cannot be corrected. These limitations impede the instrumentation process of PPDI.
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December 2024
School of Optoelectronic Engineering, Changchun University of Science and Technology, Changchun 130022, China.
In this paper, we present a method based on the conjugate image principle and micro-nano optics to detect tilt aberrations of a phased fiber laser array system. A co-aperture optics system was adapted to detect the tilt aberrations of a seven-element phased fiber laser array system simultaneously. A Kepler telescope was designed to construct the conjugate relation between the exit pupil of a fiber optic laser array system and a microlens array and also to match the size of the seven beams and the microlens array.
View Article and Find Full Text PDFSci Rep
January 2025
School of Emergency Management and Safety Engineering, China University of Mining & Technology, Beijing, 100083, China.
To address limitations of traditional inclinometers and height sensors in determining the posture and support height of hydraulic supports in coal mining, we propose a novel method predicated on travel measurements of the leg and tail beam cylinders. This method calculates the posture and height of hydraulic supports in mechanized mining. By conducting meticulous kinematic analysis of the hydraulic supports, a skeleton model of the main structural parameters of the hydraulic support was constructed.
View Article and Find Full Text PDFOptical misalignment between transmitter and receiver leads to power loss and mode crosstalk in a mode division multiplexing (MDM) free-space optical (FSO) link. We report both numerical simulations and experimental results on the propagation performance of two typical vector beams, C-point polarization full Poincaré beams (FPB), and V-point polarization cylindrical vector beams (CVB), compared to homogeneous polarization scalar vortex beams (SVB) under optical misalignment. The FSO communication performance under misalignment using different transmit beams is evaluated in terms of power loss, mode crosstalk, power penalty, etc.
View Article and Find Full Text PDFMicroscopy (Oxf)
January 2025
Department of Materials Physics, Graduate School of Engineering, Nagoya University, Chikusa-ku, Nagoya 464-8603, Japan.
The distribution of dopants in host crystals significantly influences the chemical and electronic properties of materials. Therefore, determining this distribution is crucial for optimizing material performance. The previously developed statistical ALCHEMI (St-ALCHEMI), an extension of the atom-location by channeling-enhanced microanalysis (ALCHEMI) technique, utilizes variations in electron channeling based on the beam direction relative to the crystal orientation.
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