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Citations for "Long Waves and Short Waves: Growth Through Intensive and Extensive Search"

by Boyan Jovanovic & Rafael Rob

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  1. Garicano, Luis & Rossi-Hansberg, Esteban, 2012. "Organizing growth," Journal of Economic Theory, Elsevier, vol. 147(2), pages 623-656.
  2. Auerswald, Philip & Kauffman, Stuart & Lobo, Jose & Shell, Karl, 2000. "The production recipes approach to modeling technological innovation: An application to learning by doing," Journal of Economic Dynamics and Control, Elsevier, vol. 24(3), pages 389-450, March.
  3. John D. Stiver, 2003. "Technology Creation, Diffusion, and Growth Cycles," Working papers 2003-35, University of Connecticut, Department of Economics.
  4. Stuart Kauffman & Jose Lobo & William G. Macready, 1998. "Optimal Search on a Technology Landscape," Research in Economics 98-10-091e, Santa Fe Institute.
  5. Bramoullé, Yann & Saint-Paul, Gilles, 2010. "Research cycles," Journal of Economic Theory, Elsevier, vol. 145(5), pages 1890-1920, September.
  6. Andolfatto, D. & MacDonald, G.M., 1995. "Technological Innovation, Diffusion and Business Cycle Dynamics," Discussion Papers dp95-08, Department of Economics, Simon Fraser University.
  7. David Andolfatto & Glenn MacDonald, 1998. "Technology Diffusion and Aggregate Dynamics," Review of Economic Dynamics, Elsevier for the Society for Economic Dynamics, vol. 1(2), pages 338-370, April.
  8. Uwe Cantner & Simone Vannuccini, 2012. "A New View of General Purpose Technologies," Jena Economic Research Papers 2012-054, Friedrich-Schiller-University Jena.
  9. Boyan Jovanovic, 2006. "Asymmetric Cycles," Review of Economic Studies, Oxford University Press, vol. 73(1), pages 145-162.
  10. Дементьев В.Е., 2013. "Структурные Факторы Технологического Развития," Журнал Экономика и математические методы (ЭММ), Центральный Экономико-Математический Институт (ЦЭМИ), vol. 49(4), pages 33-46, октябрь.
  11. Olsson, Ola, 2001. "Why Does Technology Advance in Cycles?," Working Papers in Economics 38, University of Gothenburg, Department of Economics.
  12. Francois, Patrick & Shi, Shouyong, 1999. "Innovation, Growth, and Welfare-Improving Cycles," Journal of Economic Theory, Elsevier, vol. 85(2), pages 226-257, April.
  13. Francois, P. & Lloyd-Ellis, H., 2001. "Animal Spirits Meets Creative Destruction," Discussion Paper 2001-36, Tilburg University, Center for Economic Research.
  14. Afonso, Oscar & Neves, Pedro Cunha & Thompson, Maria, 2016. "The skill premium and economic growth with costly investment, complementarities and international trade of intermediate goods," Japan and the World Economy, Elsevier, vol. 37, pages 73-86.
  15. Maliar, Lilia & Maliar, Serguei, 2004. "Endogenous Growth And Endogenous Business Cycles," Macroeconomic Dynamics, Cambridge University Press, vol. 8(05), pages 559-581, November.
  16. Nahuis, R., 1998. "The Dynamics of a General Purpose Technology in a Research and Assimilation Model," Discussion Paper 1998-119, Tilburg University, Center for Economic Research.
  17. Clancy, Matthew, 2015. "Combinatorial Innovation and Research Strategies: Theoretical Framework and Empirical Evidence from Two Centuries of Patent Data," Staff General Research Papers Archive 38400, Iowa State University, Department of Economics.
  18. Xiangkang Yin & Ehud Zuscovitch, 1999. "Interaction of Drastic and Incremental Innovations: Economic Development Through Schumpeterian Waves," Working Papers 1999.02, School of Economics, La Trobe University.
  19. Prajit K. Dutta & Aldo Rustichini, 1990. "(s,S) Equilibria in Stochastic Games with an Application to Product Innovations," Discussion Papers 916, Northwestern University, Center for Mathematical Studies in Economics and Management Science.
  20. Kauffman, Stuart & Lobo, Jose & Macready, William G., 2000. "Optimal search on a technology landscape," Journal of Economic Behavior & Organization, Elsevier, vol. 43(2), pages 141-166, October.
  21. Jakub Growiec & Ingmar Schumacher, 2013. "Technological opportunity, long-run growth, and convergence," Oxford Economic Papers, Oxford University Press, vol. 65(2), pages 323-351, April.
  22. Iyigun, Murat, 2006. "Clusters of invention, life cycle of technologies and endogenous growth," Journal of Economic Dynamics and Control, Elsevier, vol. 30(4), pages 687-719, April.
  23. Bart Hobijn & Boyan Jovanovic, 2001. "The Information-Technology Revolution and the Stock Market: Evidence," American Economic Review, American Economic Association, vol. 91(5), pages 1203-1220, December.
  24. Wälde, Klaus, 1999. "A Poisson-Ramsey growth model: Creative destruction, endogenous cycles and growth," Technical Reports 1999,32, Technische Universität Dortmund, Sonderforschungsbereich 475: Komplexitätsreduktion in multivariaten Datenstrukturen.
  25. Kiminori Matsuyama & Iryna Sushko & Laura Gardini, 2014. "Globalization and Synchronization of Innovation Cycles," Discussion Papers 1527, Centre for Macroeconomics (CFM), revised Dec 2014.
  26. Ghosh, Arghya & Kato, Takao & Morita, Hodaka, 2017. "Incremental innovation and competitive pressure in the presence of discrete innovation," Journal of Economic Behavior & Organization, Elsevier, vol. 135(C), pages 1-14.
  27. Zon Adriaan van & Kronenberg Tobias, 2005. "General Purpose Technologies and Energy Policy," Research Memorandum 011, Maastricht University, Maastricht Economic Research Institute on Innovation and Technology (MERIT).
  28. Peter B. Meyer, 2003. "Episodes of Collective Invention," Working Papers 368, U.S. Bureau of Labor Statistics.
  29. Erik Canton & Harald Uhlig, 1999. "Growth and the cycle: Creative destruction versus entrenchment," Journal of Economics, Springer, vol. 69(3), pages 239-266, October.
  30. Scott Freeman & Dong-Pyo Hong & Dan Peled, 1999. "Endogenous Cycles and Growth with Indivisible Technological Developments," Review of Economic Dynamics, Elsevier for the Society for Economic Dynamics, vol. 2(2), pages 402-432, April.
  31. Anderson, Keith & Brooks, Chris & Katsaris, Apostolos, 2010. "Speculative bubbles in the S&P 500: Was the tech bubble confined to the tech sector?," Journal of Empirical Finance, Elsevier, vol. 17(3), pages 345-361, June.
  32. Boldrin, Michele & Levine, David K., 2001. "Growth Cycles and Market Crashes," Journal of Economic Theory, Elsevier, vol. 96(1-2), pages 13-39, January.
  33. Lundström, Susanna, 2003. "Technological Opportunities and Growth in the Natural Resource Sector," Working Papers in Economics 116, University of Gothenburg, Department of Economics.
  34. Tara Viswanath, 1991. "Parallel Search: An Application to R & D," Discussion Papers 957, Northwestern University, Center for Mathematical Studies in Economics and Management Science.
  35. Cheng, Leonard K. & Dinopoulos, Elias, 1996. "A multisectoral general equilibrium model of Schumpeterian growth and fluctuations," Journal of Economic Dynamics and Control, Elsevier, vol. 20(5), pages 905-923, May.
  36. Walde, Klaus, 2002. "The economic determinants of technology shocks in a real business cycle model," Journal of Economic Dynamics and Control, Elsevier, vol. 27(1), pages 1-28, November.
  37. repec:sfu:sfudps:95-08 is not listed on IDEAS
  38. Stadler, Manfred, 2013. "Scientific breakthroughs, innovation clusters and stochastic growth cycles," University of Tuebingen Working Papers in Economics and Finance 60, University of Tuebingen, Faculty of Economics and Social Sciences.
  39. Zon,Adriaan,van & Fortune,Emmanuelle & Kronenberg,Tobias, 2003. "How to Sow and Reap as You Go: a Simple Model of Cyclical Endogenous Growth," Research Memorandum 029, Maastricht University, Maastricht Economic Research Institute on Innovation and Technology (MERIT).
  40. Justman, Moshe, 2004. "Transitional dynamics of output, wages and profits in innovation-led growth: a general equilibrium analysis," Structural Change and Economic Dynamics, Elsevier, vol. 15(2), pages 183-205, June.
  41. Bhattacharjya, Ashoke S., 1996. "Composition of R&D and technological cycles," Journal of Economic Dynamics and Control, Elsevier, vol. 20(1-3), pages 445-470.
This information is provided to you by IDEAS at the Research Division of the Federal Reserve Bank of St. Louis using RePEc data.