Underdetermination in classic and modern tests of general relativity

被引:0
|
作者
Wolf, William J. [1 ]
Sanchioni, Marco [2 ]
Read, James [1 ]
机构
[1] Univ Oxford, Fac Philosophy, Oxford, England
[2] Ist Univ Sophia, Via San Vito 28, I-50064 Figline E Incisa Valdarno, FI, Italy
关键词
General relativity; Geometric trinity; Teleparallel gravity; Underdetermination; Experimental tests of gravity; Newtonian gravitational theory; Theory equivalence; MODIFIED GRAVITY; MACHS PRINCIPLE; EQUIVALENCE; INVARIANCE; CONSTANT; SPINORS; PHYSICS; PULSAR; TETRAD;
D O I
10.1007/s13194-024-00617-1
中图分类号
N09 [自然科学史]; B [哲学、宗教];
学科分类号
01 ; 0101 ; 010108 ; 060207 ; 060305 ; 0712 ;
摘要
Canonically, 'classic' tests of general relativity (GR) include perihelion precession, the bending of light around stars, and gravitational redshift; 'modern' tests have to do with, inter alia, relativistic time delay, equivalence principle tests, gravitational lensing, strong field gravity, and gravitational waves. The orthodoxy is that both classic and modern tests of GR afford experimental confirmation of that theory in particular. In this article, we question this orthodoxy, by showing there are classes of both relativistic theories (with spatiotemporal geometrical properties different from those of GR) and non-relativistic theories (in which the lightcones of a relativistic spacetime are 'widened') which would also pass such tests. Thus, (a) issues of underdetermination in the context of GR loom much larger than one might have thought, and (b) given this, one has to think more carefully about what exactly such tests in fact are testing.
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页数:41
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