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Reševanje problema največje neodvisne množice z uporabo kvantnega emulatorja Pulser : delo diplomskega seminarja
ID Radman, Martin (Author), ID Povh, Janez (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomski nalogi obravnavamo problem največje neodvisne množice in njegovo reševanje z uporabo kvantnega emulatorja Pulser. Ta nam omogoča emulacijo Pasqalovega kvantnega računalnika, ki temelji na tehnologiji nevtralnih atomov. Problem najprej formuliramo kot kvadratični binarni optimizacijski problem brez omejitev (QUBO) in ga nato prevedemo v problem iskanja osnovnega stanja ustreznega Hamiltonskega operatorja. Za reševanje uporabimo adiabatni kvantni algoritem, pri katerem kvantni sistem počasi razvijamo od enostavno pripravljenega začetnega stanja do končnega stanja, ki kodira rešitev problema. Obravnavamo tudi fizikalni model Rydbergovih atomov, ki omogoča naravno implementacijo problema na enotskih diskovnih grafih. Algoritem implementiramo in analiziramo v knjižnici Pulser. Rezultati simulacij pokažejo, da uspešnost metode narašča z daljšim časom evolucije in je odvisna od izbire parametrov, kot sta Rabijeva frekvenca in frekvenčni odmik. Delo tako potrjuje, da kvantni pristopi predstavljajo obetavno smer za reševanje kombinatoričnih optimizacijskih problemov.

Language:Slovenian
Keywords:kvantno računalništvo, adiabatni kvantni algoritem, QUBO, problem največje neodvisne množice, Rydbergovi atomi, nevtralni atomi, enotski diskovni grafi, Pulser, Pasqal
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2026
PID:20.500.12556/RUL-184513 This link opens in a new window
UDC:519.8:530.145
COBISS.SI-ID:284831747 This link opens in a new window
Publication date in RUL:09.07.2026
Views:244
Downloads:109
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Secondary language

Language:English
Title:Solving the maximum independent set problem using the Pulser quantum emulator
Abstract:
This thesis addresses the Maximum Independent Set problem and its solution using the Pulser quantum emulator. Pulser enables the emulation of Pasqal's quantum processor, which is based on neutral atom technology. The problem is first formulated as a Quadratic Unconstrained Binary Optimization (QUBO) problem and then mapped to the task of finding the ground state of an appropriate Hamiltonian. To solve the problem, we employ an adiabatic quantum algorithm, in which the quantum system is slowly evolved from an easily prepared initial state to a final state that encodes the solution. We also examine the physical model of Rydberg atoms, which naturally enables the encoding of unit disk graphs. The algorithm is implemented and analyzed using the Pulser framework. Simulation results show that performance improves with longer evolution times and depends on the choice of parameters such as the Rabi frequency and detuning. The results indicate that quantum approaches represent a promising direction for solving combinatorial optimization problems.

Keywords:quantum computing, adiabatic quantum algorithm, QUBO, maximum independent set, Rydberg atoms, neutral atoms, unit disk graphs, Pulser, Pasqal

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