We hypothesize that when spins are aligned along the axis to form an antiferromagnetic chain, the Deoxyribonucleic Acid supercoil can act as a spin system. When spins are expressed in the Lie algebra of {SU(2)} the spin coordination Chern-Simons topology may be used to determine the (connecting) linking number. It is possible to compute the elastic energy linked to twisting (torsion) and bending (curvature) as expressed in terms of gauge fields \(\left\{ {SU\left( 2 \right)} \right\}\) . Bend and twist are demonstrated to be interdependent rather than two distinct entities. By such imitation, an information resource related to genetics might be spin entanglement, which is the representation of the thermodynamic entropy. The configuration of genetic information might be included in the information theory in quantum dimensions paradigm.

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Theoretical Models of Deoxyribonucleic Acid (DEOXYRIBONUCLEIC ACID) Elasticity

  • Subhamoy Singha Roy,
  • Yash Nandkuliyar

摘要

We hypothesize that when spins are aligned along the axis to form an antiferromagnetic chain, the Deoxyribonucleic Acid supercoil can act as a spin system. When spins are expressed in the Lie algebra of {SU(2)} the spin coordination Chern-Simons topology may be used to determine the (connecting) linking number. It is possible to compute the elastic energy linked to twisting (torsion) and bending (curvature) as expressed in terms of gauge fields \(\left\{ {SU\left( 2 \right)} \right\}\) . Bend and twist are demonstrated to be interdependent rather than two distinct entities. By such imitation, an information resource related to genetics might be spin entanglement, which is the representation of the thermodynamic entropy. The configuration of genetic information might be included in the information theory in quantum dimensions paradigm.