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The Segerstrom Model: Stability, Speed of Convergence and Policy Implications

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  • Thomas M. Steger

    (Swiss Federal Institute of Technology (Zurich))

Abstract

This short paper presents a simple analytical stability proof for the well-known Segerstrom (1998) model of endogenous growth. Moreover, a calibrated version of the model is employed to assess the speed of convergence. The result shows that transitional dynamics are important and, hence, the policy ineffectiveness proposition of non-scale endogenous growth models must be qualified.

Suggested Citation

  • Thomas M. Steger, 2003. "The Segerstrom Model: Stability, Speed of Convergence and Policy Implications," Economics Bulletin, AccessEcon, vol. 15(4), pages 1-8.
  • Handle: RePEc:ebl:ecbull:eb-03o00002
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    References listed on IDEAS

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    1. Gene M. Grossman & Elhanan Helpman, 1991. "Quality Ladders in the Theory of Growth," The Review of Economic Studies, Review of Economic Studies Ltd, vol. 58(1), pages 43-61.
    2. Ortigueira, Salvador & Santos, Manuel S, 1997. "On the Speed of Convergence in Endogenous Growth Models," American Economic Review, American Economic Association, vol. 87(3), pages 383-399, June.
    3. Lutz G. Arnold, 2002. "On the Effectiveness of Growth‐Enhancing Policies in a Model of Growth Without Scale Effects," German Economic Review, Verein für Socialpolitik, vol. 3(3), pages 339-346, August.
    4. Paul Segerstrom & Elias Dinopoulos, 1999. "A Schumpeterian Model of Protection and Relative Wages," American Economic Review, American Economic Association, vol. 89(3), pages 450-472, June.
    5. Susanto Basu, 1996. "Procyclical Productivity: Increasing Returns or Cyclical Utilization?," The Quarterly Journal of Economics, President and Fellows of Harvard College, vol. 111(3), pages 719-751.
    6. Segerstrom, Paul S, 1998. "Endogenous Growth without Scale Effects," American Economic Review, American Economic Association, vol. 88(5), pages 1290-1310, December.
    7. Jones, Charles I, 1995. "R&D-Based Models of Economic Growth," Journal of Political Economy, University of Chicago Press, vol. 103(4), pages 759-784, August.
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    Cited by:

    1. Grossmann, Volker & Steger, Thomas & Trimborn, Timo, 2013. "Dynamically optimal R&D subsidization," Journal of Economic Dynamics and Control, Elsevier, vol. 37(3), pages 516-534.
    2. Koichi Futagami & Takeo Hori, 2010. "Technological Progress And Population Growth: Do We Have Too Few Children?," The Japanese Economic Review, Japanese Economic Association, vol. 61(1), pages 64-84, March.
    3. Sener, Fuat, 2008. "R&D policies, endogenous growth and scale effects," Journal of Economic Dynamics and Control, Elsevier, vol. 32(12), pages 3895-3916, December.
    4. Segerstrom, Paul & Dinopoulos, Elias, 2006. "North-South Trade and Economic Growth," CEPR Discussion Papers 5887, C.E.P.R. Discussion Papers.
    5. Segerstrom, Paul & Dinopoulos, Elias, 2003. "A Theory of North-South Trade and Globalization," CEPR Discussion Papers 4140, C.E.P.R. Discussion Papers.
    6. Ohki, Kazuyoshi, 2015. "Analysis of transition dynamics caused by technological breakthroughs: Cause of productivity slowdown and drop in existing firms’ stock prices," Structural Change and Economic Dynamics, Elsevier, vol. 35(C), pages 12-25.
    7. Hwan C. Lin & L. F. Shampine, 2018. "R&D-based Calibrated Growth Models with Finite-Length Patents: A Novel Relaxation Algorithm for Solving an Autonomous FDE System of Mixed Type," Computational Economics, Springer;Society for Computational Economics, vol. 51(1), pages 123-158, January.
    8. Simon Wiederhold, 2012. "The Role of Public Procurement in Innovation: Theory and Empirical Evidence," ifo Beiträge zur Wirtschaftsforschung, ifo Institute - Leibniz Institute for Economic Research at the University of Munich, number 43.
    9. Gabriel Felbermayr, 2004. "Does trade cause divergence? Dynamic panel data evidence," Economics working papers 2004-07, Department of Economics, Johannes Kepler University Linz, Austria.
    10. Tanaka, Hitoshi & Iwaisako, Tatsuro & Futagami, Koichi, 2007. "Dynamic analysis of innovation and international transfer of technology through licensing," Journal of International Economics, Elsevier, vol. 73(1), pages 189-212, September.
    11. Simon Wiederhold, 2009. "Government Spending Composition in a Simple Model of Schumpeterian Growth," Jena Economics Research Papers 2009-101, Friedrich-Schiller-University Jena.
    12. Iwaisako, Tatsuro, 2020. "Welfare Effects Of Patent Protection In A Semi-Endogenous Growth Model," Macroeconomic Dynamics, Cambridge University Press, vol. 24(3), pages 708-728, April.
    13. Lin, Hwan C. & Shampine, L.F., 2014. "Finite-length Patents and Functional Differential Equations in a Non-scale R&D-based Growth Model," MPRA Paper 61603, University Library of Munich, Germany.
    14. A. Minniti & C.P. Parello & P.S. Segerstrom, 2008. "A Schumpeterian Growth Model with Heterogenous Firms," Working Papers 645, Dipartimento Scienze Economiche, Universita' di Bologna.
    15. Makoto Hirono, 2020. "Transitional dynamics of the R&D growth model with public education," Metroeconomica, Wiley Blackwell, vol. 71(4), pages 662-675, November.
    16. Gustafsson, Peter & Segerstrom, Paul, 2010. "North-South trade with increasing product variety," Journal of Development Economics, Elsevier, vol. 92(2), pages 97-106, July.

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    More about this item

    JEL classification:

    • O0 - Economic Development, Innovation, Technological Change, and Growth - - General
    • N1 - Economic History - - Macroeconomics and Monetary Economics; Industrial Structure; Growth; Fluctuations

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