Physics Department and Institute for Strings, Cosmology and Astroparticle Physics, Columbia University, New York, NY 10027, USA.
Phys Rev Lett. 2012 Dec 14;109(24):241301. doi: 10.1103/PhysRevLett.109.241301.
The chameleon, or generalizations thereof, is a light scalar that couples to matter with gravitational strength, but whose manifestation depends on the ambient matter density. A key feature is that the screening mechanism suppressing its effects in high-density environments is determined by the local scalar field value. Under very general conditions, we prove two theorems limiting its cosmological impact: (i) the Compton wavelength of such a scalar can be at most ~/= 1 MPc at the present cosmic density, which restricts its impact to nonlinear scales; and (ii) the conformal factor relating Einstein- and Jordan-frame scale factors is essentially constant over the last Hubble time, which precludes the possibility of self-acceleration. These results imply that chameleonlike scalar fields have a negligible effect on the linear-scale growth history; theories that invoke a chameleonlike scalar to explain cosmic acceleration rely on a form of dark energy rather than a genuine modified gravity effect. Our analysis applies to a broad class of chameleon, symmetron, and dilaton theories.
变色龙或其推广,是一种与引力强度耦合的轻标量,但它的表现取决于环境物质的密度。一个关键特征是,在高密度环境中抑制其影响的屏蔽机制由局部标量场值决定。在非常一般的条件下,我们证明了两个限制其宇宙学影响的定理:(i) 这种标量的康普顿波长在目前的宇宙密度下最多可达~= 1MPc,这限制了它对非线性尺度的影响;(ii) 将爱因斯坦和乔丹框架标度因子联系起来的共形因子在最后一个哈勃时间内基本保持不变,这排除了自加速的可能性。这些结果意味着,变色龙样标量场对线性尺度增长历史的影响可以忽略不计;那些利用变色龙样标量来解释宇宙加速的理论依赖于一种暗能量形式,而不是真正的修正引力效应。我们的分析适用于广泛的变色龙、对称子和伸子理论。