From physics to biology by extending criticality and symmetry breakings.
نویسندگان
چکیده
Symmetries play a major role in physics, in particular since the work by E. Noether and H. Weyl in the first half of last century. Herein, we briefly review their role by recalling how symmetry changes allow to conceptually move from classical to relativistic and quantum physics. We then introduce our ongoing theoretical analysis in biology and show that symmetries play a radically different role in this discipline, when compared to those in current physics. By this comparison, we stress that symmetries must be understood in relation to conservation and stability properties, as represented in the theories. We posit that the dynamics of biological organisms, in their various levels of organization, are not "just" processes, but permanent (extended, in our terminology) critical transitions and, thus, symmetry changes. Within the limits of a relative structural stability (or interval of viability), variability is at the core of these transitions.
منابع مشابه
The Vacuum Structure of N=2 Super–QCD with Classical Gauge Groups
We determine the vacuum structure of N=2 supersymmetric QCD with fundamental quarks for gauge groups SO(n) and Sp(2n), extending prior results for SU(n). The solutions are all given in terms of families of hyperelliptic Riemann surfaces of genus equal to the rank of the gauge group. In the scale invariant cases, the solutions all have exact Sdualities which act on the couplings by subgroups of ...
متن کاملMolecular Parity Violation and Chirality: The Asymmetry of Life and the Symmetry Violations in Physics
After a brief introduction into some basic asymmetries observed in nature, such as the biomolecular homochirality in living species on earth, the dominance of matter over antimatter in the observable universe, and irreversibility in physical-chemical processes providing a preferred arrow of time, we provide a discussion of the concepts of fundamental symmetries in physics and of the three diffe...
متن کاملParity-time-symmetric quantum critical phenomena
Synthetic non-conservative systems with parity-time (PT) symmetric gain-loss structures can exhibit unusual spontaneous symmetry breaking that accompanies spectral singularity. Recent studies on PT symmetry in optics and weakly interacting open quantum systems have revealed intriguing physical properties, yet many-body correlations still play no role. Here by extending the idea of PT symmetry t...
متن کاملOn the Construction of Renormalized Gauge Theories Using Renormalization Group Techniques
The aim of these lectures is to describe a construction, as selfcontained as possible, of renormalized gauge theories. Following a suggestion of Polchinski, we base our analysis on the Wilson renormalization group method. After a discussion of the infinite cut-off limit, we study the short distance properties of the Green functions verifying the validity of Wilson short distance expansion. We a...
متن کاملLow-energy grand unification with SU(16).
We study the possibility of achieving low unification scale in a grand unification scheme based on the gauge group SU(16). Baryon number symmetry being an explicit local gauge symmetry here gauge boson mediated proton decay is absent . We present in detail a number of symmetry breaking patterns and the higgs field representations giving rise to the desired symmetry breakings and identify one ch...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Progress in biophysics and molecular biology
دوره 106 2 شماره
صفحات -
تاریخ انتشار 2011