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Photon-Mediated Interactions in Lattices of Coplanar Waveguide Resonators
Photon-Mediated Interactions in Lattices of Coplanar Waveguide Resonators
Photon-Mediated Interactions in Lattices of Coplanar Waveguide Resonators

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20250211151131
ISBN  
9798383180914
DDC  
530.1
저자명  
Amouzegar, Maya.
서명/저자  
Photon-Mediated Interactions in Lattices of Coplanar Waveguide Resonators
발행사항  
[Sl] : University of Maryland, College Park, 2024
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2024
형태사항  
141 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-01, Section: B.
주기사항  
Advisor: Kollar, Alicia.
학위논문주기  
Thesis (Ph.D.)--University of Maryland, College Park, 2024.
초록/해제  
요약Circuit quantum electrodynamics (circuit QED) has become one of the main platforms for quantum simulation and computation. One of its notable advantages is its ability to facilitate the study of new regimes of light-matter interactions. This is achieved due to the native strong coupling between superconducting qubits and microwave resonators, and the ability to lithographically define a large variety of resonant microwave structures, for example, photonic crystals. Such geometries allow the implementation of novel forms of photon-mediated qubit-qubit interaction, cross-Kerr qubit-mediated interactions, and studies of many-body physics. In this dissertation, I will show how coplanar waveguide (CPW) lattices can be used to create engineered photon-mediated interactions between superconducting qubits. I will discuss the design and fabrication of a quasi one-dimensional lattice of CPW resonators with unconventional bands, such as gapped and ungapped flat bands. I will then present experimental data characterizing photon-mediated interactions between tunable transmon qubits and qubit-mediated non-linear photon-photon interactions in the said lattice. Our results indicate the realization of unconventional photon-photon interactions and qubit-qubit interactions, therefore, demonstrating the utility of this platform for probing novel interactions between qubits and photons. In future design iterations, one can extend the study of these interactions to two-dimensional flat and hyperbolic lattices.
일반주제명  
Quantum physics
일반주제명  
Physics
일반주제명  
Atomic physics
일반주제명  
Computational physics
키워드  
Coplanar waveguide resonators
키워드  
Lattice
키워드  
Light-matter interaction
키워드  
Photonic crystal
키워드  
Qubit
키워드  
Transmon qubits
기타저자  
University of Maryland, College Park Physics
기본자료저록  
Dissertations Abstracts International. 86-01B.
전자적 위치 및 접속  
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■1001  ▼aAmouzegar,  Maya.
■24510▼aPhoton-Mediated  Interactions  in  Lattices  of  Coplanar  Waveguide  Resonators
■260    ▼a[Sl]▼bUniversity  of  Maryland,  College  Park▼c2024
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2024
■300    ▼a141  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-01,  Section:  B.
■500    ▼aAdvisor:  Kollar,  Alicia.
■5021  ▼aThesis  (Ph.D.)--University  of  Maryland,  College  Park,  2024.
■520    ▼aCircuit  quantum  electrodynamics  (circuit  QED)  has  become  one  of  the  main  platforms  for  quantum  simulation  and  computation.  One  of  its  notable  advantages  is  its  ability  to  facilitate  the  study  of  new  regimes  of  light-matter  interactions.  This  is  achieved  due  to  the  native  strong  coupling  between  superconducting  qubits  and  microwave  resonators,  and  the  ability  to  lithographically  define  a  large  variety  of  resonant  microwave  structures,  for  example,  photonic  crystals.  Such  geometries  allow  the  implementation  of  novel  forms  of  photon-mediated  qubit-qubit  interaction,  cross-Kerr  qubit-mediated  interactions,  and  studies  of  many-body  physics.  In  this  dissertation,  I  will  show  how  coplanar  waveguide  (CPW)  lattices  can  be  used  to  create  engineered  photon-mediated  interactions  between  superconducting  qubits.  I  will  discuss  the  design  and  fabrication  of  a  quasi  one-dimensional  lattice  of  CPW  resonators  with  unconventional  bands,  such  as  gapped  and  ungapped  flat  bands.  I  will  then  present  experimental  data  characterizing  photon-mediated  interactions  between  tunable  transmon  qubits  and  qubit-mediated  non-linear  photon-photon  interactions  in  the  said  lattice.  Our  results  indicate  the  realization  of  unconventional  photon-photon  interactions  and  qubit-qubit  interactions,  therefore,  demonstrating  the  utility  of  this  platform  for  probing  novel  interactions  between  qubits  and  photons.  In  future  design  iterations,  one  can  extend  the  study  of  these  interactions  to  two-dimensional  flat  and  hyperbolic  lattices.
■590    ▼aSchool  code:  0117.
■650  4▼aQuantum  physics
■650  4▼aPhysics
■650  4▼aAtomic  physics
■650  4▼aComputational  physics
■653    ▼aCoplanar  waveguide  resonators
■653    ▼aLattice
■653    ▼aLight-matter  interaction
■653    ▼aPhotonic  crystal
■653    ▼aQubit
■653    ▼aTransmon  qubits  
■690    ▼a0599
■690    ▼a0605
■690    ▼a0748
■690    ▼a0216
■71020▼aUniversity  of  Maryland,  College  Park▼bPhysics.
■7730  ▼tDissertations  Abstracts  International▼g86-01B.
■790    ▼a0117
■791    ▼aPh.D.
■792    ▼a2024
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17160884▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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