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mct infrared detector performance, limited by ‐ thermally activated generation processes, as radiative, auger and shockley read (1) 1
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mercury cadmium telluride applications ‐ and multilayer heterostructures grown by epitaxial techniques (1) 1
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中国通信:英文版, ISSN 1673-5447, 2016, Volume 13, Issue 7, pp. 66 - 73
... pixels.From another aspect,this paper calculates the differences among pixel pairs and proves that the histogram of difference values will be smoothed by stego... 
特征函数 | 矩匹配 | 秘密信息 | 相邻像素 | LSB | 支持向量机分类器 | 差异分析 | 应用 | Support vector machines | pixel differences | Histograms | Frequency-domain analysis | nonadjacent pixels | Discrete Fourier transforms | information hiding | Feature extraction | SVM | Cryptography | Mathematical model | steganalysis | REGRESSION | ALGORITHM | SEGMENTATION | NETWORKS | TELECOMMUNICATIONS
Journal Article
Journal Article
Cognitive Science, ISSN 0364-0213, 07/2018, Volume 42, Issue 5, pp. 1677 - 1699
Journal Article
Visual Cognition, ISSN 1350-6285, 07/2015, Volume 23, Issue 6, pp. 758 - 780
The detection of regularities in the sensory environment, known as statistical learning, is an important brain function that has been observed in many... 
prospective Memory | sensory processing | Diffusion Decision Model | Statistical learning | REPRESENTATIONS | SEQUENCES | NEURAL BASIS | NONADJACENT DEPENDENCIES | PSYCHOLOGY, EXPERIMENTAL | IMPLICIT | 8-MONTH-OLD INFANTS | VISUAL TRANSITIONS | MONKEY INFEROTEMPORAL CORTEX | REGULARITIES | DIFFUSION-MODEL
Journal Article
11/2010, ISBN 0470697067, 23
This chapter contains sections titled: Introduction Nonequilibrium devices Dual‐band devices Emission devices Conclusions References 
mercury cadmium telluride (MCT) applications ‐ and multilayer heterostructures grown by epitaxial techniques | photodiode structure ‐ of interest as infrared emitter | most successful application of multilayer MCT to date ‐ for dual‐waveband devices | MCT heterostructure complexity, limited by higher interdiffusion rates ‐ in II–VI materials | MCT infrared detector mechanisms ‐ as Auger 1 (or CCCH) and Auger 7 (or CHLH) | nonequilibrium devices | nonequilibrium, dual‐band and emission devices | dual‐band devices, a dual‐band detector system made from two separate detectors | dual‐band device, giving nonadjacent bands ‐ without need of using optical filters | MCT infrared detector performance, limited by ‐ thermally activated generation processes, as radiative, Auger and Shockley Read (SR) | Most successful application of multilayer MCT to date - for dual-waveband devices | Nonequilibrium, dual-band and emission devices | Mercury cadmium telluride (MCT) applications - and multilayer heterostructures grown by epitaxial techniques | MCT infrared detector mechanisms - as Auger 1 (or CCCH) and Auger 7 (or CHLH) | Photodiode structure - of interest as infrared emitter | MCT heterostructure complexity, limited by higher interdiffusion rates - in II-VI materials | Dual-band devices, a dual-band detector system made from two separate detectors | MCT infrared detector performance, limited by - thermally activated generation processes, as radiative, Auger and Shockley Read (SR) | Dual-band device, giving nonadjacent bands - without need of using optical filters | Nonequilibrium devices
Book Chapter
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