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Testing the Preferred-Habitat Theory: The Role ofTime-Varying Risk Aversion

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  • Till Strohsal

Abstract

This paper examines the preferred-habitat theory under time-varying risk aversion. The predicted positive relation between the term spread and relative supply of longer-term debt is stronger when risk aversion is high. To capture this effect, a time-varying coefficient model is introduced and applied to German bond data. The results support the theoretical predictions and indicate substantial time variation: under high risk aversion, yield spreads react about three times more strongly than when risk aversion is low. The accumulated response of term spreads to a one standard deviation change in debt supply ranges between 5 and 33 basis points.

Suggested Citation

  • Till Strohsal, 2013. "Testing the Preferred-Habitat Theory: The Role ofTime-Varying Risk Aversion," SFB 649 Discussion Papers SFB649DP2013-043, Sonderforschungsbereich 649, Humboldt University, Berlin, Germany.
  • Handle: RePEc:hum:wpaper:sfb649dp2013-043
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    References listed on IDEAS

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    1. Dimitri Vayanos & Jean‐Luc Vila, 2021. "A Preferred‐Habitat Model of the Term Structure of Interest Rates," Econometrica, Econometric Society, vol. 89(1), pages 77-112, January.
    2. Ben S. Bernanke & Vincent R. Reinhart & Brian P. Sack, 2004. "Monetary Policy Alternatives at the Zero Bound: An Empirical Assessment," Brookings Papers on Economic Activity, Economic Studies Program, The Brookings Institution, vol. 35(2), pages 1-100.
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    Cited by:

    1. Hesse, Henning & Hofmann, Boris & Weber, James Michael, 2018. "The macroeconomic effects of asset purchases revisited," Journal of Macroeconomics, Elsevier, vol. 58(C), pages 115-138.

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    More about this item

    Keywords

    preferred-habitat; time-varying risk aversion; yield spreads; bond supply;
    All these keywords.

    JEL classification:

    • E43 - Macroeconomics and Monetary Economics - - Money and Interest Rates - - - Interest Rates: Determination, Term Structure, and Effects
    • C22 - Mathematical and Quantitative Methods - - Single Equation Models; Single Variables - - - Time-Series Models; Dynamic Quantile Regressions; Dynamic Treatment Effect Models; Diffusion Processes

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