INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN

The mechanism of energy transport in alpha-helical protein was modeled by Davydov and Scott. The interspine interaction between the three channels of alpha-helical protein and damping effect on the probability amplitude of amide-I energy is investigated in this paper. The study results that the dyna...

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Main Author: AKBAR RAMADHAN (NIM: 20215011), IMAM
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/22542
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:22542
spelling id-itb.:225422017-11-16T09:07:02ZINTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN AKBAR RAMADHAN (NIM: 20215011), IMAM Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/22542 The mechanism of energy transport in alpha-helical protein was modeled by Davydov and Scott. The interspine interaction between the three channels of alpha-helical protein and damping effect on the probability amplitude of amide-I energy is investigated in this paper. The study results that the dynamics of energy transport is governed by a set of three coupled non-linear Schrodinger equation. The resulting coupled NLS is analyzed by Hirota bilinear method. The study shows that the interspine interactions result in the greater amplitude. Meanwhile the damping term has no contribution to the change of soliton amplitude, but it make the soliton propagation slower. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description The mechanism of energy transport in alpha-helical protein was modeled by Davydov and Scott. The interspine interaction between the three channels of alpha-helical protein and damping effect on the probability amplitude of amide-I energy is investigated in this paper. The study results that the dynamics of energy transport is governed by a set of three coupled non-linear Schrodinger equation. The resulting coupled NLS is analyzed by Hirota bilinear method. The study shows that the interspine interactions result in the greater amplitude. Meanwhile the damping term has no contribution to the change of soliton amplitude, but it make the soliton propagation slower.
format Theses
author AKBAR RAMADHAN (NIM: 20215011), IMAM
spellingShingle AKBAR RAMADHAN (NIM: 20215011), IMAM
INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
author_facet AKBAR RAMADHAN (NIM: 20215011), IMAM
author_sort AKBAR RAMADHAN (NIM: 20215011), IMAM
title INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
title_short INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
title_full INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
title_fullStr INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
title_full_unstemmed INTER-SPINE INTERACTION AND DAMPING EFFECT ON THE DYNAMICS OF ENERGY TRANSPORT IN PROTEIN
title_sort inter-spine interaction and damping effect on the dynamics of energy transport in protein
url https://digilib.itb.ac.id/gdl/view/22542
_version_ 1822019823369977856