Application-oriented classification and performance analysis of precision linear feed mechanisms for machine tools. [PDF]
Zhou J +5 more
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Mie-mediated edge-enhanced Raman scattering of vertically-stacking ge quantum-dots/Si-SiN array for enhancing photoluminescence and photodetection. [PDF]
Yang SH, Alonso MI, Lin HC, Li PW.
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Ultracompact Programmable Silicon Photonics Using Layers of Low-Loss Phase-Change Material Sb<sub>2</sub>Se<sub>3</sub> of Increasing Thickness. [PDF]
Blundell S +8 more
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Fast Fabrication Nanopores on a PMMA Membrane by a Local High Electric Field Controlled Breakdown. [PDF]
Fang S +9 more
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Additive Manufacturing of Nanoscale Multimaterial Voxels Via Meniscus-Confined Electrodeposition. [PDF]
Sprengel S +12 more
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Improving Laser Direct Writing Overlay Precision Based on a Deep Learning Method. [PDF]
Gao G +5 more
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Sampling Sub-Diffraction Temperature Gradients with Spectrally Orthogonal Nanoparticle Luminescence. [PDF]
Harrington B +4 more
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Research on the Effect of Vibrational Micro-Displacement of an Astronomical Camera on Detector Imaging. [PDF]
Liu B +5 more
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A Survey of Control Issues in Nanopositioning
Nanotechnology is the science of understanding matter and the control of matter at dimensions of 100 nm or less. Encompassing nanoscale science, engineering, and technology, nanotechnology involves imaging, measuring, modeling, and manipulation of matter at this level of precision.
Santosh Devasia, S O Reza Moheimani
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Control of the nanopositioning devices
42nd IEEE International Conference on Decision and Control (IEEE Cat. No.03CH37475), 2004We present a paradigm which prescribes a procedure for a systematic design, analysis and development of nanopositioning devices. In this effort, we have used many tools from modern control theory to model devices, to quantify device resolution, bandwidth, range, and robustness, and to tackle undesirable nonlinear effects such as hysteresis and creep ...
Srinivasa M. Salapaka, Abu Sebastian
openaire +1 more source

