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Detectors and integrated circuits of orbiting telescopes 轨道望远镜的探测器和集成电路
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039587
Vasilii V. Levin, Aleksandr V. Krivchenko, Maria V. Kuznetsova, Aleksandr A. Lutovinov, Ilya A. Mereminsky, Aleksei A. Rotin
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引用次数: 0
Physics news on the Internet: May 2023 (based on electronic preprints) 互联网物理新闻:2023年5月(基于电子预印本)
IF 2.7 3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039353
Y. N. Eroshenko
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引用次数: 0
New books on physics and related sciences: May 2023 物理学和相关科学的新书:2023年5月
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039351
Maria S. Aksenteva, Elena V. Zakharova
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引用次数: 0
Gamma quanta and neutrinos from space: what we see now and what we need to see more (Scientific session of the Physical Sciences Department of the Russian Academy of Sciences, April 21, 2023, St. Petersburg, A.F. Ioffe Institute of Physics and Technology RAS) 来自太空的伽马量子和中微子:我们现在看到的和我们需要看到更多的东西(俄罗斯科学院物理科学部科学会议,2023年4月21日,圣彼得堡,A.F. Ioffe物理与技术研究所)
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039529
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引用次数: 0
Modern silicon detectors for gamma-astrophysics 用于伽玛天体物理学的现代硅探测器
IF 2.7 3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039531
E. Verbitskaya, V. Eremin
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引用次数: 0
Large-format photodetector systems based on solid-state detectors in optical astronomy 光学天文学中基于固态探测器的大幅面光电探测器系统
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.2023.04.039575
Valerii V. Vlasyuk, Irina V. Afanasieva, Valerii I. Ardilanov, Valerii A. Murzin, Nikolai G. Ivaschenko, Maksim A. Pritychenko, Sergei N. Dodonov
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引用次数: 0
New books on physics and related sciences 关于物理和相关科学的新书
IF 2.7 3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-04-01 DOI: 10.3367/ufne.0181.201108k.0904
E. Zakharova
This edition is a compilation of selected works of Yurii Aleksandrovich Tserkovnikov (1928±2008), an outstanding specialist in statistical mechanics, the method of two-time temperature-dependent Green's functions, plasma physics, and the theory of nonideal Bose gas. Tserkovnikovwas one of the brightest stars in NN Bogoliubov's scientific school. This collection brings together 30 articles reflecting the main fields of YuATserkovnikov's scientific activity overmore than half a century, previously scattered through various journals. They remain scientifically and methodologically relevant. The book is intended for researchers, postgraduates, and senior-year university students in physics and mathematics specializing in statistical mechanics and its applications to condensed matter physics. The list of Yu A Tserkovnikov's published scientific papers is given at the end of the volume. (Yanus-K Publishing LLC: 127411 Moscow, ul. Uchinskaya 1; tel. (7-495) 245-58-92)
这本书是尤里·亚历山德罗维奇·策尔科夫尼科夫(1928±2008)的选集,他是统计力学、两次温度依赖格林函数方法、等离子体物理学和非理想玻色气体理论方面的杰出专家。tserkovnikov是NN Bogoliubov科学学派中最耀眼的明星之一。这本文集汇集了30篇文章,反映了半个多世纪以来YuATserkovnikov科学活动的主要领域,以前分散在各种期刊上。它们在科学和方法上仍然具有相关性。这本书是为研究人员,研究生,和四年级的大学学生在物理和数学专门从事统计力学及其应用到凝聚态物理。余A察尔科夫尼科夫发表的科学论文的清单在本卷的末尾。(Yanus-K出版有限责任公司:127411莫斯科,ul。Uchinskaya 1;电话(7-495)245-58-92
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引用次数: 0
Problems of parametrization of the radiation block in physical and mathematical climate models and the possibilities of their solution 物理和数学气候模式中辐射块的参数化问题及其解决的可能性
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-03-01 DOI: 10.3367/ufne.2023.03.039339
Valerii M. Fedorov
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引用次数: 0
In memory of Semen Solomonovich Gershtein 纪念精液所罗门诺维奇格什泰因
3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-03-01 DOI: 10.3367/ufne.2023.03.039343
Sergei P. Denisov, Lev M. Zelenyi, Sergei V. Ivanov, Vitalii V. Kveder, Anatolii K. Likhoded, Viktor A. Matveev, Vladimir A. Petrov, Aleksandr Yu. Rumyantsev, Aleksandr N. Skrinskii, N.P. Tkachenko, N.E. Tyurin, Boris Yu. Sharkov
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引用次数: 0
Physics news on the Internet (based on electronic preprints) 互联网上的物理新闻(基于电子预印本)
IF 2.7 3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Pub Date : 2023-03-01 DOI: 10.1070/PU2006v049n04ABEH005983
Y. N. Eroshenko
H-C NaÈ gerl of Innsbruck University in Austria and his colleagues have for the first time observed three-particle bound quantum states whose existence was predicted theoretically by V I Efimov in 1970 already [Yadernaya Fizika 12 1080 (1970)] Ð in a rare example of the complex three-body problem allowing an exact analytical solution. A universal set of low-energy bound states appears for a system of three identical particles with a strong enough resonant two-body interaction. Interestingly, because of the quantum-mechanical nature of this effect, three-particle states can even exist in the absence of two-particle bound states. The size of the threeparticle system is much less than the absolute scattering length jaj, and the three-particle interactions are universal in character and independent of precisely how two particles interact when close together. The researchers studied in experiment a degenerate gas of caesium atoms held in an optical dipole trap at temperatures between 10 and 250 nK. The scattering length was controlled by a Feshbach resonance and could be varied over a wide range by tuning the external magnetic field. For a < 0, the Efimov states were identified by a sharp increase in atomic recombination losses in the trapÐ presumably due to the three-atom system rapidly decaying from the trimer state to the state involving a deeply bound dimer state plus a free atom. At a temperature of 10 nK, Efimov states appeared when the scattering length reached ÿ850 Bohr radii. Another type of Efimov state appeared for a > 0. In this case, recombination losses are much lower and exhibit in their spectrum a recombination minimum due to the destructive interference of the three-particle system's quantum decay channels. The position of the minimum agrees well with theoretical predictions. For a > 0, Efimov states arise due to Feshbach resonances in collisions between single atoms and dimers and can be interpreted as a threebody generalization to the Feshbach resonance concept. Source: Nature 440 315 (2006) http://arxiv.org/abs/cond-mat/0512394
奥地利因斯布鲁克大学的H-C NaÈ gerl和他的同事首次观察到三粒子束缚量子态,这种量子态的存在已经在1970年被V I Efimov从理论上预测[yaderaya Fizika 12 1080 (1970)] Ð,这是一个罕见的允许精确解析解的复杂三体问题的例子。对于具有足够强的共振两体相互作用的三个相同粒子的系统,出现了一组普遍的低能束缚态。有趣的是,由于这种效应的量子力学性质,在没有两粒子束缚态的情况下,三粒子态甚至可以存在。三粒子系统的大小远小于绝对散射长度jaj,并且三粒子相互作用具有普遍性,并且与两个粒子靠近时如何相互作用完全无关。研究人员在实验中研究了一种铯原子的简并气体,这种气体被置于光学偶极子阱中,温度在10至250 nK之间。散射长度由费什巴赫共振控制,并且可以通过调节外部磁场在很大范围内变化。当a < 0时,Efimov态通过trapÐ中原子重组损失的急剧增加来确定,这可能是由于三原子体系从三聚体状态迅速衰减到涉及深结合二聚体状态和自由原子的状态。在10 nK的温度下,散射长度达到ÿ850玻尔半径时出现叶菲莫夫态。当a > 0时,出现另一种类型的Efimov状态。在这种情况下,由于三粒子系统的量子衰减通道的破坏性干涉,复合损失要低得多,并且在它们的光谱中表现出最小的复合。极小点的位置与理论预测非常吻合。当a > 0时,Efimov态是由单原子和二聚体碰撞中的费什巴赫共振引起的,可以解释为对费什巴赫共振概念的三体推广。来源:Nature 440315 (2006) http://arxiv.org/abs/cond-mat/0512394
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引用次数: 0
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