Unveiling the Damped Quantum Harmonic Oscillator

Abstract   This article dis cusses the often-overlooked "damped" quantum harmonic oscillator, a vibrating system that loses energy over time. We bridge the classical-quantum divide, starting with the familiar equation of motion for a damped oscillator using Hooke's law. Delving i...

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Main Authors: Yahya Efendi, Faza Atika Anumillah, Muhammad Nurhuda
Format: Article
Language:Indonesian
Published: Prodi Pendidikan Fisika and Unib Press, Universitas Bengkulu 2024-12-01
Series:Jurnal Kumparan Fisika
Subjects:
Online Access:https://ejournal.unib.ac.id/kumparan_fisika/article/view/35109
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author Yahya Efendi
Faza Atika Anumillah
Muhammad Nurhuda
author_facet Yahya Efendi
Faza Atika Anumillah
Muhammad Nurhuda
author_sort Yahya Efendi
collection DOAJ
description Abstract   This article dis cusses the often-overlooked "damped" quantum harmonic oscillator, a vibrating system that loses energy over time. We bridge the classical-quantum divide, starting with the familiar equation of motion for a damped oscillator using Hooke's law. Delving into quantum mechanics, we explore how the Schrödinger equation governs its behavior. We then chart a path to understanding its energy changes and time evolution using mathematical tools like annihilation and creation operators, eigenstates, and eigenvalues. We then step through the understanding of its energy changes and time evolution using mathematical tools like annihilation and creation operators, eigenstates, and eigenvalues. Finally, we introduce the time-dependent Schrödinger equation for a damped quantum harmonic oscillator, which paves the way for stable oscillations   Keywords: Damped Quantum Oscillator; Canonical Quantization; Invariant Operator; Time-Dependent Schrödinger Equation   Abstrak   Artikel ini membahas osilator harmonik kuantum teredam, sebuah sistem getaran yang kehilangan energi seiring waktu, yang sering kali diabaikan dalam kajian fisika. Kami menjembatani kesenjangan antara mekanika klasik dan kuantum, dimulai dengan persamaan gerak osilator teredam berdasarkan hukum Hooke. Dalam ranah mekanika kuantum, kami mengeksplorasi bagaimana persamaan Schrödinger mengatur perilaku sistem ini. Selanjutnya, kami menelusuri perubahan energi dan evolusi waktu osilator ini menggunakan alat matematika seperti operator annihilasi dan kreasi, eigenstate, dan eigenvalue. Terakhir, kami memperkenalkan persamaan Schrödinger bergantung waktu untuk osilator harmonik kuantum teredam, yang membuka wawasan terhadap osilasi stabil dalam sistem ini.   Kata kunci: Osilator Kuantum Teredam; Kuantisasi Kanonik; Operator Invarian; Persamaan Schrödinger Bergantung Waktu
format Article
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institution Kabale University
issn 2655-1403
language Indonesian
publishDate 2024-12-01
publisher Prodi Pendidikan Fisika and Unib Press, Universitas Bengkulu
record_format Article
series Jurnal Kumparan Fisika
spelling doaj-art-8bf19bbc3c924fc7b2208b9f2e75ca2e2025-08-20T03:41:59ZindProdi Pendidikan Fisika and Unib Press, Universitas BengkuluJurnal Kumparan Fisika2655-14032024-12-017310.33369/jkf.7.3.114-126Unveiling the Damped Quantum Harmonic OscillatorYahya Efendi0Faza Atika Anumillah1Muhammad Nurhuda2Brawijaya UniversityBrawijaya UniversityBrawijaya University Abstract   This article dis cusses the often-overlooked "damped" quantum harmonic oscillator, a vibrating system that loses energy over time. We bridge the classical-quantum divide, starting with the familiar equation of motion for a damped oscillator using Hooke's law. Delving into quantum mechanics, we explore how the Schrödinger equation governs its behavior. We then chart a path to understanding its energy changes and time evolution using mathematical tools like annihilation and creation operators, eigenstates, and eigenvalues. We then step through the understanding of its energy changes and time evolution using mathematical tools like annihilation and creation operators, eigenstates, and eigenvalues. Finally, we introduce the time-dependent Schrödinger equation for a damped quantum harmonic oscillator, which paves the way for stable oscillations   Keywords: Damped Quantum Oscillator; Canonical Quantization; Invariant Operator; Time-Dependent Schrödinger Equation   Abstrak   Artikel ini membahas osilator harmonik kuantum teredam, sebuah sistem getaran yang kehilangan energi seiring waktu, yang sering kali diabaikan dalam kajian fisika. Kami menjembatani kesenjangan antara mekanika klasik dan kuantum, dimulai dengan persamaan gerak osilator teredam berdasarkan hukum Hooke. Dalam ranah mekanika kuantum, kami mengeksplorasi bagaimana persamaan Schrödinger mengatur perilaku sistem ini. Selanjutnya, kami menelusuri perubahan energi dan evolusi waktu osilator ini menggunakan alat matematika seperti operator annihilasi dan kreasi, eigenstate, dan eigenvalue. Terakhir, kami memperkenalkan persamaan Schrödinger bergantung waktu untuk osilator harmonik kuantum teredam, yang membuka wawasan terhadap osilasi stabil dalam sistem ini.   Kata kunci: Osilator Kuantum Teredam; Kuantisasi Kanonik; Operator Invarian; Persamaan Schrödinger Bergantung Waktu https://ejournal.unib.ac.id/kumparan_fisika/article/view/35109Damped Quantum OscillatorCanonical QuantizationInvariant OperatorTime-Dependent Schrödinger Equation
spellingShingle Yahya Efendi
Faza Atika Anumillah
Muhammad Nurhuda
Unveiling the Damped Quantum Harmonic Oscillator
Jurnal Kumparan Fisika
Damped Quantum Oscillator
Canonical Quantization
Invariant Operator
Time-Dependent Schrödinger Equation
title Unveiling the Damped Quantum Harmonic Oscillator
title_full Unveiling the Damped Quantum Harmonic Oscillator
title_fullStr Unveiling the Damped Quantum Harmonic Oscillator
title_full_unstemmed Unveiling the Damped Quantum Harmonic Oscillator
title_short Unveiling the Damped Quantum Harmonic Oscillator
title_sort unveiling the damped quantum harmonic oscillator
topic Damped Quantum Oscillator
Canonical Quantization
Invariant Operator
Time-Dependent Schrödinger Equation
url https://ejournal.unib.ac.id/kumparan_fisika/article/view/35109
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AT fazaatikaanumillah unveilingthedampedquantumharmonicoscillator
AT muhammadnurhuda unveilingthedampedquantumharmonicoscillator