Tek atom deneyleri için temel araçların dizayn ve kurulumu
Bu tez size mi ait?
Bu kayıt toplu arşivden geldi. Sizinse profilinize bağlayın.
Özet (EN)
Neutral atoms are one of the most promising systems for quantum information and quantum engineering, in general. Full and efficient control over cold atoms and their interactions with light has been a challenging and exciting task, especially for quantum information and engineering. These systems can now be integrated successfully into the applications like the implementation of a quantum internet, simulation, and experiments involving nonlinear single-photons. Rubidium atoms provide a playground for atomic physics experiments and applications since it has accessible atomic transition and a readily available two-level system. In order to manipulate single 87Rb atoms, experimental tools should be meticulously prepared. Since the atomic quantum states are delicate and fragile, their interaction with light should be handled with care. For the manipulation of these atoms, low linewidth stable laser systems should be constructed to provide an efficient and effective solution. To achieve the required stability, the external-cavity diode laser (ECDL) and frequency modulation (FM) spectroscopy setups are constructed to obtain the low-linewidth, high-stability laser source. Alongside the laser setup, an ultra-high vacuum (UHV) setup is constructed and up to a 2.5 × e−10 mbar vacuum level is obtained. To reach ultra-high vacuum levels, additional baking is performed and Rb atom source is mounted to be readily used. UHV setup is required to minimize the background collisions and decrease the environmental disturbances from the targeted atomic system. Lastly, optical cavities that will be used to manipulate single atoms are computationally studied in this thesis. Although the strong focusing cavities are used to achieve high coupling strength, they come with several disadvantages. Since they are on the edge of the stability diagram, higher-order mode excitation is dominant for the cases where focusing strength is the highest. Therefore, knowing the mode structure is important for those regimes to have a complete understanding of these devices. Together with laser and UHV setups, optical cavities are the complementary part of most single-atom experiments.
Yazar
Mehmet Öncü
Kurum

Özyeğin University
Elektrik Elektronik Mühendisliği Bilim Dalı
Bu Yayına Nasıl Atıf Yapılır
Mehmet Öncü (Master Thesis). Tek atom deneyleri için temel araçların dizayn ve kurulumu, 2022, Özyeğin University.
Lisans
Tüm Hakları Saklıdır
Bu eser belirtilen lisans koşulları altında paylaşılmaktadır.
Özyeğin University tezlerinden daha fazlası
- A metaheuristic approach for multiple-item economic lot sizing problem with inventory dependent demand(2023)
- İleri karmaşık olay işleme özellikli veri akışı yönetim sisteminin tasarım ve gerçeklemesi(2013)
- Biyolojik kendiliğinden iyileşen çimento esaslı harçların performansa dayalı değerlendirilmesi(2022)
- Effective remorse provisions for drug and stimulant substances crimes in the Turkish Penal Code(2023)
- Bina bölütlemesi ve yükseklik tahmini için görsel durum-uzayı tabanlı çoklu görevli öğrenme(2025)
- Tam ka-bant uydu haberleşmesi için çift dairesel kutuplamalı horn anten ve besleme ağı(2025)