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In energetic materials, the localization of energy into "hotspots" when a shock wave interacts with the material's microstructure is known to dictate the initiation of chemical reactions and detonation. Recent results have shown that,…

Materials Science · Physics 2021-09-28 Brenden W. Hamilton , Matthew P. Kroonblawd , Alejandro Strachan

Meso-scale calculations of pore collapse and hotspot formation in energetic crystals provide closure models to macro-scale hydrocodes for predicting the shock sensitivity of energetic materials. To this end, previous works obtained…

Mesoscale and Nanoscale Physics · Physics 2024-10-30 Chukwudubem Okafor , Jacob Herrin , Catalin R. Picu , Tommy Sewell , John Brennan , James Larentzos , H. S. Udaykumar

Shockwave interactions with material microstructure localizes energy into hotspots, which act as nucleation sites for complex processes such as phase transformations and chemical reactions. To date, hotspots have been described via their…

Materials Science · Physics 2020-12-22 Brenden W. Hamilton , Matthew P. Kroonblawd , Chunyu Li , Alejandro Strachan

The dynamic collapse of pores under shock loading is thought to be directly related to hot spot generation and material failure, which is critical to the performance of porous energetic and structural materials. However, the shock…

Applied Physics · Physics 2024-09-02 Barry P Lawlor , Vatsa Gandhi , Guruswami Ravichandran

Shock wave interactions with defects, such as pores, are known to play a key role in the chemical initiation of energetic materials. The shock response of hexanitrostilbene is studied through a combination of large scale reactive molecular…

Materials Science · Physics 2018-02-07 Mitchell A. Wood , David E. Kittell , Cole D. Yarrington , Aidan P. Thompson

The shock initiation of energetic materials is mediated by the localization of mechanical energy into hotspots. These originate through the interaction of the shock and material microstructure; the most potent hotspots are formed by the…

Materials Science · Physics 2026-03-16 Jalen Macatangay , Chunyu Li , Alejandro Strachan

Direct modeling of porous materials under shock is a complex issue. We investigate such a system via the newly developed material-point method. The effects of shock strength and porosity size are the main concerns. For the same porosity,…

Materials Science · Physics 2015-05-13 Aiguo Xu , Guangcai Zhang , X. F. Pan , Jianshi Zhu

Shock wave reaction results in various characteristic regimes in porous material. The geometrical and topological properties of these regimes are highly concerned in practical applications. Via the morphological analysis to characteristic…

Materials Science · Physics 2015-05-18 Aiguo Xu , Guangcai Zhang , Yangjun Ying , Ping Zhang , Jianshi Zhu

Numerous crystal- and microstructural-level mechanisms are at play in the formation of hotspots, which are known to govern high explosive initiation behavior. Most of these mechanisms, including pore collapse, interfacial friction, and…

Regions of energy localization referred to as hotspots are known to govern shock initiation and the run-to-detonation in energetic materials. Mounting computational evidence points to accelerated chemistry in hotspots from large…

Chemical Physics · Physics 2022-06-13 Brenden W. Hamilton , Matthew P. Kroonblawd , Alejandro Strachan

Initiation in heterogeneous energetic material (HEM) subjected to shock loading occurs due to the formation of hot spots. The criticality of the hot spots governs the initiation and sensitivity of HEMs. In porous energetic materials,…

Applied Physics · Physics 2019-03-26 A. Nassar , N. K. Rai , O. Sen , H. S. Udaykumar

The collapse of cavities under shock is a key problem in various fields ranging from erosion of material, ignition of explosive, to sonoluminescence, etc. We study such processes using the material-point-method developed recently in the…

Materials Science · Physics 2007-07-18 Aiguo Xu , X. F. Pan , Guangcai Zhang , Jianshi Zhu

The crystallization of amorphous solids under ultrafast laser irradiation represents a paradigm of non-equilibrium phase transitions, where the interplay between electromagnetic energy localization and atomic-scale dynamics remains largely…

The composition of the gaseous phase of cavitation bubbles and its role on the collapse remains to date poorly understood. In this work, experiments of single cavitation bubbles in aqueous ammonia serve as a novel approach to investigate…

At the nano-scale, surface phenomena such as attractive VdW forces strongly dominate; explosions may well be thought impossible. We confirm nano explosions that are important for a fractal (hierarchical, scale invariant) pore structure,…

Chemical Physics · Physics 2020-08-06 Sascha Vongehr

The problem of determining the thermomechanical characteristics of the system of closely spaced bodies considered by many authors. For scalar problems, such as problems of heat, electrostatic, etc., the localization effect was found (so…

Classical Physics · Physics 2013-10-07 S. I. Rakin

Sedimentary rocks often form the upper layers or the entire target rocks in impact events. Thermodynamic properties of sedimentary rocks related to porosity and water saturation affect the process of impact crater formation. The…

Geophysics · Physics 2025-10-21 Juulia-Gabrielle Moreau , Argo Jõeleht , Anna Losiak , Meng-Hua Zhu , Jüri Plado

The localization of slow and fast slip in fault gouges may play a crucial role in understanding the mechanics of earthquakes and slow slip events. Here, we investigate the fracture energy accompanying this localization and the subsequent…

Geophysics · Physics 2026-04-24 Dmitry I. Garagash , Alice-Agnes Gabriel

Context. Solar magnetic pores are, due to their concentrated magnetic fields, suitable guides for magnetoacoustic waves. Recent observations have shown that propagating energy flux in pores is subject to strong damping with height; however,…

Solar and Stellar Astrophysics · Physics 2021-04-14 Julia M. Riedl , Caitlin A. Gilchrist-Millar , Tom Van Doorsselaere , David B. Jess , Samuel D. T. Grant

A novel laser cooling mechanism based on many body effects is presented. The method can be applicable for cooling a large class of atoms and molecules in higher density than commonly excepted by existing methods. The cooling mechanism…

Atomic Physics · Physics 2021-03-11 Roie Dann , Ronnie Kosloff
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