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Effect of Fluid Viscosity on Earthquake Nucleation 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (12)
作者:  Cornelio, C.;  Violay, M.
收藏  |  浏览/下载:20/0  |  提交时间:2020/08/18
earthquake nucleation  viscous fluids  boundary lubrication regime  
Active Steady-State Creep on A Nontectonic Normal Fault in Southeast Utah: Implications for Strain Release in a Rapidly Deforming Salt System 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (11)
作者:  Kravitz, Katherine;  Mueller, Karl;  Bilham, Roger G.;  Walton, Maureen
收藏  |  浏览/下载:36/0  |  提交时间:2020/05/20
Fault creep  Salt tectonics  Extension  Extensometer  
Temporal Magnetotellurics Reveals Mechanics of the 2012 Mount Tongariro, NZ, Eruption 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (8)
作者:  Hill, Graham J.;  Bibby, Hugh M.;  Peacock, Jared;  Wallin, Erin L.;  Ogawa, Yasuo;  Caricchi, Luca;  Keys, Harry;  Bennie, Stewart L.;  Avram, Yann
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/02
magnetotelluric  Taupo Volcanic Zone  eruption dynamics  Tongariro  phreatic  
Preseismic Fault Creep and Elastic Wave Amplitude Precursors Scale With Lab Earthquake Magnitude for the Continuum of Tectonic Failure Modes 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (8)
作者:  Shreedharan, Srisharan;  Bolton, David Chas;  Riviere, Jacques;  Marone, Chris
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/02
earthquake precursors  earthquake prediction  transmissivity  acoustic signals  fault creep  slow slip  
Constraining Microfractures in Foliated Alpine Fault Rocks With Laser Ultrasonics 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (8)
作者:  Simpson, Jonathan;  Adam, Ludmila;  van Wijk, Kasper;  Charoensawan, Jirapat
收藏  |  浏览/下载:2/0  |  提交时间:2020/07/02
microfractures  rock physics  fault zones  laser ultrasonics  
Observation of Bose-Einstein condensates in an Earth-orbiting research lab 期刊论文
NATURE, 2020, 582 (7811) : 103-+
作者:  Yamamoto, Keisuke;  Venida, Anthony;  Yano, Julian;  Biancur, Douglas E.;  Kakiuchi, Miwako;  Gupta, Suprit;  Sohn, Albert S. W.;  Mukhopadhyay, Subhadip;  Lin, Elaine Y.;  Parker, Seth J.;  Banh, Robert S.;  Paulo, Joao A.;  Wen, Kwun Wah;  Debnath, Jayanta;  Kim, Grace E.;  Mancias, Joseph D.;  Fearon, Douglas T.;  Perera, Rushika M.;  Kimmelman, Alec C.
收藏  |  浏览/下载:25/0  |  提交时间:2020/07/03

Quantum mechanics governs the microscopic world, where low mass and momentum reveal a natural wave-particle duality. Magnifying quantum behaviour to macroscopic scales is a major strength of the technique of cooling and trapping atomic gases, in which low momentum is engineered through extremely low temperatures. Advances in this field have achieved such precise control over atomic systems that gravity, often negligible when considering individual atoms, has emerged as a substantial obstacle. In particular, although weaker trapping fields would allow access to lower temperatures(1,2), gravity empties atom traps that are too weak. Additionally, inertial sensors based on cold atoms could reach better sensitivities if the free-fall time of the atoms after release from the trap could be made longer(3). Planetary orbit, specifically the condition of perpetual free-fall, offers to lift cold-atom studies beyond such terrestrial limitations. Here we report production of rubidium Bose-Einstein condensates (BECs) in an Earth-orbiting research laboratory, the Cold Atom Lab. We observe subnanokelvin BECs in weak trapping potentials with free-expansion times extending beyond one second, providing an initial demonstration of the advantages offered by a microgravity environment for cold-atom experiments and verifying the successful operation of this facility. With routine BEC production, continuing operations will support long-term investigations of trap topologies unique to microgravity(4,5), atom-laser sources(6), few-body physics(7,8)and pathfinding techniques for atom-wave interferometry(9-12).


  
Laboratory Study on Fluid-Induced Fault Slip Behavior: The Role of Fluid Pressurization Rate 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (6)
作者:  Wang, Lei;  Kwiatek, Grzegorz;  Rybacki, Erik;  Bonnelye, Audrey;  Bohnhoff, Marco;  Dresen, Georg
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/02
fault slip  fluid injection  induced seismicity  fluid pressurization rate  stick-slip  fault creep  
Elastic Impact Consequences for High-Frequency Earthquake Ground Motion 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (5)
作者:  Tsai, Victor C.;  Hirth, Greg
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/02
Layered nanocomposites by shear-flow-induced alignment of nanosheets 期刊论文
NATURE, 2020, 580 (7802) : 210-+
作者:  Rollie, Clare;  Chevallereau, Anne;  Watson, Bridget N. J.;  Chyou, Te-yuan;  Fradet, Olivier;  McLeod, Isobel;  Fineran, Peter C.;  Brown, Chris M.;  Gandon, Sylvain;  Westra, Edze R.
收藏  |  浏览/下载:39/0  |  提交时间:2020/07/03

Layered nanocomposites fabricated using a continuous and scalable process achieve properties exceeding those of natural nacre, the result of stiffened matrix polymer chains confined between highly aligned nanosheets.


Biological materials, such as bones, teeth and mollusc shells, are well known for their excellent strength, modulus and toughness(1-3). Such properties are attributed to the elaborate layered microstructure of inorganic reinforcing nanofillers, especially two-dimensional nanosheets or nanoplatelets, within a ductile organic matrix(4-6). Inspired by these biological structures, several assembly strategies-including layer-by-layer(4,7,8), casting(9,10), vacuum filtration(11-13) and use of magnetic fields(14,15)-have been used to develop layered nanocomposites. However, how to produce ultrastrong layered nanocomposites in a universal, viable and scalable manner remains an open issue. Here we present a strategy to produce nanocomposites with highly ordered layered structures using shear-flow-induced alignment of two-dimensional nanosheets at an immiscible hydrogel/oil interface. For example, nanocomposites based on nanosheets of graphene oxide and clay exhibit a tensile strength of up to 1,215 +/- 80 megapascals and a Young'  s modulus of 198.8 +/- 6.5 gigapascals, which are 9.0 and 2.8 times higher, respectively, than those of natural nacre (mother of pearl). When nanosheets of clay are used, the toughness of the resulting nanocomposite can reach 36.7 +/- 3.0 megajoules per cubic metre, which is 20.4 times higher than that of natural nacre  meanwhile, the tensile strength is 1,195 +/- 60 megapascals. Quantitative analysis indicates that the well aligned nanosheets form a critical interphase, and this results in the observed mechanical properties. We consider that our strategy, which could be readily extended to align a variety of two-dimensional nanofillers, could be applied to a wide range of structural composites and lead to the development of high-performance composites.


  
Snow Mechanics Near the Ductile-Brittle Transition: Compressive Stick-Slip and Snow Microquakes 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (4)
作者:  Lowe, H.;  Zaiser, M.;  Mosinger, S.;  Schleef, S.
收藏  |  浏览/下载:1/0  |  提交时间:2020/07/02