Preface

IF 1.9 4区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY Journal of Fire Sciences Pub Date : 2020-03-01 DOI:10.1177/0734904120914194
P. Piloto, A. Morgan
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Abstract

Evident from this definition, or from any of its variants that one can find in the growing literature on the subject, are two characteristic aspects. The first one being that such a risk takes place at a much larger scale than that of an individual institution. The second one being that it eventually spreads to the real economy outside the financial system through various “leakage” mechanisms, of which the last crisis has given some examples: liquidity shrinkage, fire sale of assets, drop in market value of derivatives. . . This type of risk, long confined to the monetary market, has spread widely in the recent past, culminating in the subprime crisis of 2008. The understanding and control of systemic risk has therefore become an extremely important societal and economic question. Such problems are now extensively being studied by people from disciplines like economics, finance and physics. The contributions by physicists are relatively new. The Econophys-Kolkata VI conference, the 6th event in this series of international conferences, held during October 21–25 last year, was dedicated to address and discuss extensively these issues and the recent developments. Like the last event in the series, this one was also organized jointly by the École Centrale Paris and the Saha Institute of Nuclear Physics, and was held at the Saha Institute of Nuclear Physics, Kolkata. This proceedings volume contains the written versions of most of the talks and seminars delivered by distinguished experts from all over the world, participating in the meeting, and accepted after refereeing. For some completeness in the cases of one or two important topics (like in the case Many-agent Games), some reviews, by experts who could not attend, were invited and incorporated in this volume.
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前言
从这个定义中,或者从人们可以在不断增长的关于这个主题的文献中找到的任何变体中,可以看出有两个特征方面。第一个是,这种风险发生的规模比单个机构大得多。第二种是它最终通过各种“泄漏”机制扩散到金融体系之外的实体经济,上一次危机给出了一些例子:流动性萎缩、资产贱卖、衍生品市值下跌。这种长期局限于货币市场的风险在最近广泛蔓延,最终导致了2008年的次贷危机。因此,对系统性风险的理解和控制已成为一个极其重要的社会和经济问题。经济学、金融学和物理学等学科的人们现在正在广泛研究这些问题。物理学家的贡献相对较新。去年10月21日至25日举行的加尔各答第六次经济会议是这一系列国际会议中的第六次会议,旨在广泛讨论这些问题和最近的发展。与该系列的最后一次活动一样,这次活动也是由巴黎中央大学和萨哈核物理研究所联合组织的,在加尔各答萨哈核物理学研究所举行。本议事录收录了来自世界各地的杰出专家参加会议并在裁判后接受的大多数演讲和研讨会的书面版本。为了在一到两个重要主题的情况下(如多代理游戏)获得一些完整性,邀请了一些无法出席的专家进行的评论,并将其纳入本卷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Fire Sciences
Journal of Fire Sciences 工程技术-材料科学:综合
CiteScore
4.00
自引率
0.00%
发文量
14
审稿时长
2.5 months
期刊介绍: The Journal of Fire Sciences is a leading journal for the reporting of significant fundamental and applied research that brings understanding of fire chemistry and fire physics to fire safety. Its content is aimed toward the prevention and mitigation of the adverse effects of fires involving combustible materials, as well as development of new tools to better address fire safety needs. The Journal of Fire Sciences covers experimental or theoretical studies of fire initiation and growth, flame retardant chemistry, fire physics relative to material behavior, fire containment, fire threat to people and the environment and fire safety engineering. This journal is a member of the Committee on Publication Ethics (COPE).
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