Preventing decoherence with giant atoms
Doktorsavhandling, 2025
In this thesis, we contextualize the papers with regards to previously existing knowledge and future applications in the fields of quantum optics and quantum technology. We also provide a detailed description of the analytical tools that are necessary to derive the results of the appended papers: we delve into Lindbladian master equations, SLH formalism, and resolvent formalism, and we focus particularly on the underlying assumptions and approximations behind these techniques.
waveguide quantum electrodynamics
continuous waveguides
resolvent formalism
Quantum optics
structured waveguides
master equation
SLH formalism
giant atoms
artificial atoms
open quantum systems
Författare
Ariadna Soro Álvarez
Tillämpad kvantfysik doktorander
Chiral quantum optics with giant atoms
Physical Review A,;Vol. 105(2022)
Artikel i vetenskaplig tidskrift
Interaction between giant atoms in a one-dimensional structured environment
Physical Review A,;Vol. 107(2023)
Artikel i vetenskaplig tidskrift
Avoiding decoherence with giant atoms in a two-dimensional structured environment
Physical Review Research,;Vol. 6(2024)
Artikel i vetenskaplig tidskrift
This thesis, titled "Preventing decoherence with giant atoms", explores a recently discovered class of quantum emitters known as giant atoms.
Unlike traditional atoms, which interact with light as a single localized point in space, giant atoms can couple to light at multiple spatially separated points. This means that they effectively interfere with themselves, a feature which we can harness to suppress decoherence and enhance control over quantum systems.
While earlier studies of giant atoms focused on their coupling to relatively simple environments, this work broadens the field by studying their behavior in more complex settings, such as chiral waveguides and structured photonic baths. The results found here offer a deeper understanding of fundamental light-matter interactions, as well as new insights into the stabilization and manipulation of quantum states—which may find applications in the design of quantum computers, quantum communication networks, and other quantum technologies.
Kvantsimulering och kvantkommunikation med stora atomer
Stiftelsen för Strategisk forskning (SSF) (FFL21-0279), 2022-08-01 -- 2027-12-31.
Wallenberg Centre for Quantum Technology (WACQT)
Knut och Alice Wallenbergs Stiftelse (KAW 2017.0449, KAW2021.0009, KAW2022.0006), 2018-01-01 -- 2030-03-31.
Stora atomer - en ny regim för kvantoptik
Vetenskapsrådet (VR) (2019-03696), 2020-01-01 -- 2023-12-31.
Ämneskategorier (SSIF 2025)
Atom- och molekylfysik och optik
Nanoteknik
Annan fysik
Styrkeområden
Nanovetenskap och nanoteknik
Fundament
Grundläggande vetenskaper
ISBN
978-91-8103-220-8
Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie: 5678
Utgivare
Chalmers