Modeling financial contagion using mutually exciting jump processes
Author(s) -
Yacine AïtSahalia,
Julio Cacho-Diaz,
Roger J. A. Laeven
Publication year - 2015
Publication title -
journal of financial economics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 11.673
H-Index - 256
eISSN - 1879-2774
pISSN - 0304-405X
DOI - 10.1016/j.jfineco.2015.03.002
Subject(s) - jump , excitation , econometrics , financial market , asset (computer security) , measure (data warehouse) , moment (physics) , economics , estimation , intensity (physics) , statistical physics , computer science , physics , finance , data mining , computer security , classical mechanics , quantum mechanics , management
We propose a model to capture the dynamics of asset returns, with periods of crises that are characterized by contagion. In the model, a jump in one region of the world increases the intensity of jumps both in the same region (self-excitation) as well as in other regions (cross-excitation), generating episodes of highly clustered jumps across world markets that mimic the observed features of the data. We develop and implement moment-based estimation and testing procedures for this model. The estimates provide evidence of self-excitation both in the US and the other world markets, and of asymmetric cross-excitation, with the US market typically having more influence on the jump intensity of other markets than the reverse. We propose filtered values of the jump intensities as a measure of market stress and examine their out-of-sample forecasting abilities
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