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Hypersphere World-Universe Model: Basic Ideas 被引量:4
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作者 Vladimir S. Netchitailo 《Journal of High Energy Physics, Gravitation and Cosmology》 2020年第4期710-752,共43页
Hypersphere World-Universe Model (WUM) envisions Matter carried from the Universe into the World from the fourth spatial dimension by Dark Matter Particles (DMPs). Luminous Matter is a byproduct of Dark Matter (DM) se... Hypersphere World-Universe Model (WUM) envisions Matter carried from the Universe into the World from the fourth spatial dimension by Dark Matter Particles (DMPs). Luminous Matter is a byproduct of Dark Matter (DM) self-annihilation. WUM introduces Dark Epoch (spanning from the Beginning of the World for 0.45 billion years) and Luminous Epoch (ever since for 13.77 billion years). Big Bang discussed in Standard Cosmology (SC) is, in our view, transition from Dark Epoch to Luminous Epoch due to Rotational Fission of Overspinning DM Supercluster’s Cores and self-annihilation of DMPs. WUM solves a number of physical problems in SC and Astrophysics through DMPs and their interactions: Angular Momentum problem in birth and subsequent evolution of Galaxies and Extrasolar systems;Fermi Bubbles—two large structures in gamma-rays and X-rays above and below Galactic center;Coronal Heating problem in solar physics—temperature of Sun’s corona exceeding that of photosphere by millions of degrees;Cores of Sun and Earth rotating faster than their surfaces;Diversity of Gravitationally-Rounded objects in Solar system and their Internal Heating. Model makes predictions pertaining to Rest Energies of DMPs, proposes New Type of their Interactions. WUM reveals Inter-Connectivity of Primary Cosmological Parameters and calculates their values, which are in good agreement with the latest results of their measurements. 展开更多
关键词 Hypersphere World-Universe Model Law of Conservation of Angular Momentum Dark Epoch Rotational Fission Luminous Epoch Dark Matter Particles self-annihilation Macroobject Shell Model Dark Matter Core Medium of the World Dark Matter Fermi Bubbles Solar Corona GEOCORONA Planetary Corona Galactic Wind Solar Wind Gamma-Ray Bursts Gravitational Bursts Fast Radio Bursts Dark Matter Reactor Lightning Initiation Problem Terrestrial Gamma-Ray Flashes Missing Baryon Problem Energy-Varying Photons
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Unidentified Infrared Discrete Emission Bands 被引量:1
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作者 Vladimir S. Netchitailo 《Journal of High Energy Physics, Gravitation and Cosmology》 2022年第2期243-253,共11页
Unidentified Infrared emission bands (UIBs) are infrared discrete emissions from circumstellar regions, interstellar media (ISM), star-forming regions, and extragalactic objects for which the identity of the emitting ... Unidentified Infrared emission bands (UIBs) are infrared discrete emissions from circumstellar regions, interstellar media (ISM), star-forming regions, and extragalactic objects for which the identity of the emitting materials is unknown. The main infrared features occur around peaks at 3.3, 6.2, 7.7, 8.6, 11.2, and 12.7 μm with the photon’s rest energy at the peaks 0.376, 0.200, 0.161, 0.144, 0.111, and 0.098 eV, respectively. The UIB emission phenomenon has been studied for about forty five years. The prevailing hypothesis is that the materials responsible for UIB are polycyclic aromatic hydrocarbon (PAH) molecules. PAHs are thought to be one of the main forms in which carbon exists in space. And yet, not a single member of this group of compounds had been identified in space definitively until now [1]. In frames of Hypersphere World-Universe Model (WUM), we introduced Dark Matter (DM) particles, named DIONs, with the rest energy 0.199 eV and an energy density of 68.8% of the total energy density of the World. DIONs compose Outer shells of DM Supercluster’s Cores—the main objects of the World [2]. In this paper, we give an explanation of UIB emission based on the self-annihilation of DM particles DIONs and biDIONs (DIONs pairs) with a rest energy about 0.38 eV that depends on the binding energy. To the best of our knowledge, WUM is the only cosmological model in existence that is consistent with UIB emission phenomenon. 展开更多
关键词 Hypersphere World-Universe Model Law of Energy Conservation Interstellar Media Dark Matter Particles self-annihilation Unidentified Infrared Emission Bands
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“情感误置”与“自我湮灭”——罗斯金对艾略特“非个性化”论的影响 被引量:1
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作者 刘须明 《国外文学》 CSSCI 北大核心 2013年第3期33-39,共7页
约翰·罗斯金认为"情感误置"这一手法虽然在艺术作品中有一定的感染力,但最杰出的艺术家在自己的作品中是不会使用"情感误置"的,他们之所以伟大,正在于能够在作品中恰当地控制自己的情感。针对"情感误置&q... 约翰·罗斯金认为"情感误置"这一手法虽然在艺术作品中有一定的感染力,但最杰出的艺术家在自己的作品中是不会使用"情感误置"的,他们之所以伟大,正在于能够在作品中恰当地控制自己的情感。针对"情感误置"的过度使用,罗斯金指出,伟大的艺术家应该在自己的作品中自我湮灭,他们的伟大与他们不在作品中呈现成正比。罗斯金的"自我湮灭"论对艾略特的"非个性化"诗学思想产生了重要的影响。 展开更多
关键词 约翰·罗斯金 情感误置 自我湮灭 T S 艾略特 非个性化
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NCl(a^1Δ)自猝灭对其生成和传输的影响 被引量:3
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作者 唐书凯 多丽萍 桑凤亭 《光电子.激光》 EI CAS CSCD 北大核心 2005年第1期21-23,共3页
利用一维预混合反应模型,对全气相碘激光(AGIL)的储能粒子NCl(a1Δ)的自猝灭反应对其生成和传输的影响进行了模拟计算。计算结果表明,NCl(a1Δ)的自猝灭反应是影响其生成和传输的主要因素;采用最新测得的自猝灭反应常数,NCl(a1Δ)自猝... 利用一维预混合反应模型,对全气相碘激光(AGIL)的储能粒子NCl(a1Δ)的自猝灭反应对其生成和传输的影响进行了模拟计算。计算结果表明,NCl(a1Δ)的自猝灭反应是影响其生成和传输的主要因素;采用最新测得的自猝灭反应常数,NCl(a1Δ)自猝灭反应对其生成和传输的影响程度有大幅度降低,但仍然是主要的影响因素。为了提高NCl(a1Δ)的生成传输效率和准确分析评估AGIL,有必要进一步深入开展NCl(a1Δ)自猝灭常数及其与温度关系的测定工作。 展开更多
关键词 猝灭 常数 温度关系 一维 传输 粒子 NC 反应 影响 生成
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