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The results facilitate clear relationship between the characterizations of Y2O3 film and growth parameters, also, it can be realized that adjustment of optical constants of Y2O3 films in a large range having the aid of substrate temperature to obtain desirable composition and structure for optical applications.
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We show that this method holds some significant systematic errors caused by imperfect adjustment of the optical components.
The relative intensities of the annular ring and central fill were varied by an adjustment of the optical elements in the variable beam profile modulator.
It provides ready compatibility with a wide range of suitable scatterers for adjustment of the optical properties.
Here we present the 'optoclamp', a feedback control technology that provides continuous, real-time adjustments of bidirectional optical stimulation in order to lock spiking activity at specified targets over timescales ranging from seconds to days.
It was further found that the range of optical adjustment where accurate measurements of polystyrene beads can be obtained still allows for significant variations in the measurement of more challenging protein particle populations.
Comparison between Ag/PIN and Ag/NIP structure shows worse optical adjustment of Ag/NIP device mainly due to the lower optical gap of N-type a-Si H la-Si H
Synergistic molecular design and electrospun processing may offer a fascinating strategy for the control of polymer conformation to the adjustment of nano and micro optical devices such as organic fluorescence sensors, lasers and light-emitting diodes.
It has been convinced that the YF3 films with optimal optical properties can be achieved by adjustment of substrate temperature for desirable optical design and applications.
Fig. 1 Schematic of the NSOM/QD-based dual-color imaging system, in which the charge-coupled device (CCD) was used as the monitor of optical fiber probe adjustment, and two avalanche photodiodes (APD) and two filters (605 ± 10 or 655 ± 10 nm) were employed as the detectors of two color fluorescence images, respectively.
Each measurement is preceded by an initialization sequence, which includes adjustment of bead height relative to the coverslip using a variant of optical force microscopy (to ±4 nm), a two-dimensional raster scan to calibrate position detector response, and adjustment of bead lateral position relative to the microtubule substrate (to ±3 nm).
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