Aging and the Narrowing of Scientific Innovation

Fuente: arXiv
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Hauptverfasser: Cui, Haochuan, Lin, Yiling, Wu, Lingfei, Evans, James A.
Format: Preprint
Veröffentlicht: 2022
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author Cui, Haochuan
Lin, Yiling
Wu, Lingfei
Evans, James A.
author_facet Cui, Haochuan
Lin, Yiling
Wu, Lingfei
Evans, James A.
contents With rising life expectancies around the world and an older scientific workforce than ever before, what does aging mean for individual scientists, and what do aging scientists mean for scientific progress as a whole? Here we examine how scientists and scholars age in terms of how their ideas and contributions relate to the evolving frontier of knowledge and how demographically aging fields relate to field-level advance. At the individual level, we examine how research experiences and choices can moderate the effects of intellectual aging. At the collective level, we explore mechanisms that link individual and collective aging. Prior research focuses on star scientists, their changing dates and rates of breakthrough success throughout history. We explore this for scientists in all fields over time, drawing upon novel deep learning measurements that allow us not only to trace positive attention through citation but also negative attention through explicit criticism with a novel, comprehensive database of over 20,000 human-validated critical citations. We find that younger scientists tend toward disruptive contributions that push the frontier, while older scientists engage in combinatorial innovation with an aging collection of components. This includes analyzing the impact of the 1994 U.S. Supreme Court ruling on mandatory retirement and examining how unexpected collaborations affect citation patterns.
format Preprint
id arxiv_https___arxiv_org_abs_2202_04044
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Aging and the Narrowing of Scientific Innovation
Cui, Haochuan
Lin, Yiling
Wu, Lingfei
Evans, James A.
Digital Libraries
With rising life expectancies around the world and an older scientific workforce than ever before, what does aging mean for individual scientists, and what do aging scientists mean for scientific progress as a whole? Here we examine how scientists and scholars age in terms of how their ideas and contributions relate to the evolving frontier of knowledge and how demographically aging fields relate to field-level advance. At the individual level, we examine how research experiences and choices can moderate the effects of intellectual aging. At the collective level, we explore mechanisms that link individual and collective aging. Prior research focuses on star scientists, their changing dates and rates of breakthrough success throughout history. We explore this for scientists in all fields over time, drawing upon novel deep learning measurements that allow us not only to trace positive attention through citation but also negative attention through explicit criticism with a novel, comprehensive database of over 20,000 human-validated critical citations. We find that younger scientists tend toward disruptive contributions that push the frontier, while older scientists engage in combinatorial innovation with an aging collection of components. This includes analyzing the impact of the 1994 U.S. Supreme Court ruling on mandatory retirement and examining how unexpected collaborations affect citation patterns.
title Aging and the Narrowing of Scientific Innovation
topic Digital Libraries
url https://arxiv.org/abs/2202.04044