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Laser-Free Operations in a Mixed-Species Trapped Ion Processor
Laser-Free Operations in a Mixed-Species Trapped Ion Processor
Laser-Free Operations in a Mixed-Species Trapped Ion Processor

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20250211152707
ISBN  
9798384054979
DDC  
530.1
저자명  
Knaack, Hannah Marie.
서명/저자  
Laser-Free Operations in a Mixed-Species Trapped Ion Processor
발행사항  
[Sl] : University of Colorado at Boulder, 2024
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2024
형태사항  
270 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-03, Section: B.
주기사항  
Advisor: Slichter, Daniel H.
학위논문주기  
Thesis (Ph.D.)--University of Colorado at Boulder, 2024.
초록/해제  
요약Trapped ions are a leading platform for quantum computing, but, like all other candidate platforms, the techniques that will enable scaling to larger systems are still an area of active research. Laser-free control operations for ion-based qubits offer many advantages for scaling. The microwave and radiofrequency currents used to perform these operations are cheaper and more straightforward to generate, control, and integrate with trapped ions than lasers. They offer power-efficient parallelization of gate operations relative to laser-based gates, and are intrinsically free from the photon scattering, laser phase noise, and beam pointing errors that are the primary sources of infidelity in laser-based control. Additionally, operating with multiple co-trapped ion species (e.g., a 'data' and a 'helper' species) offers many advantages for computing, as well as for exploring fundamental physics and precision measurement by extending quantum control techniques to more exotic charged particles. This thesis demonstrates the first use of multiple ion species in a trap designed for laser-free qubit control and entangling operations, and describes a theoretical framework and early experimental results for mixed-species quantum logic operations based on magnetic field gradients. Laser-free mixed-species quantum information processing offers many potential advantages for scaling to larger systems while avoiding some common error sources and challenges intrinsic to laser-based quantum information with trapped ions.
일반주제명  
Quantum physics
일반주제명  
Physics
일반주제명  
Particle physics
키워드  
Laser-free control operations
키워드  
Mixed-species
키워드  
Quantum information
키워드  
Trapped ions
기타저자  
University of Colorado at Boulder Physics
기본자료저록  
Dissertations Abstracts International. 86-03B.
전자적 위치 및 접속  
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■1001  ▼aKnaack,  Hannah  Marie.▼0(orcid)0000-0003-4478-8250
■24510▼aLaser-Free  Operations  in  a  Mixed-Species  Trapped  Ion  Processor
■260    ▼a[Sl]▼bUniversity  of  Colorado  at  Boulder▼c2024
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2024
■300    ▼a270  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-03,  Section:  B.
■500    ▼aAdvisor:  Slichter,  Daniel  H.
■5021  ▼aThesis  (Ph.D.)--University  of  Colorado  at  Boulder,  2024.
■520    ▼aTrapped  ions  are  a  leading  platform  for  quantum  computing,  but,  like  all  other  candidate  platforms,  the  techniques  that  will  enable  scaling  to  larger  systems  are  still  an  area  of  active  research.  Laser-free  control  operations  for  ion-based  qubits  offer  many  advantages  for  scaling.  The  microwave  and  radiofrequency  currents  used  to  perform  these  operations  are  cheaper  and  more  straightforward  to  generate,  control,  and  integrate  with  trapped  ions  than  lasers.  They  offer  power-efficient  parallelization  of  gate  operations  relative  to  laser-based  gates,  and  are  intrinsically  free  from  the  photon  scattering,  laser  phase  noise,  and  beam  pointing  errors  that  are  the  primary  sources  of  infidelity  in  laser-based  control.  Additionally,  operating  with  multiple  co-trapped  ion  species  (e.g.,  a  'data'  and  a  'helper'  species)  offers  many  advantages  for  computing,  as  well  as  for  exploring  fundamental  physics  and  precision  measurement  by  extending  quantum  control  techniques  to  more  exotic  charged  particles.  This  thesis  demonstrates  the  first  use  of  multiple  ion  species  in  a  trap  designed  for  laser-free  qubit  control  and  entangling  operations,  and  describes  a  theoretical  framework  and  early  experimental  results  for  mixed-species  quantum  logic  operations  based  on  magnetic  field  gradients.  Laser-free  mixed-species  quantum  information  processing  offers  many  potential  advantages  for  scaling  to  larger  systems  while  avoiding  some  common  error  sources  and  challenges  intrinsic  to  laser-based  quantum  information  with  trapped  ions.
■590    ▼aSchool  code:  0051.
■650  4▼aQuantum  physics
■650  4▼aPhysics
■650  4▼aParticle  physics
■653    ▼aLaser-free  control  operations
■653    ▼aMixed-species
■653    ▼aQuantum  information
■653    ▼aTrapped  ions
■690    ▼a0599
■690    ▼a0798
■690    ▼a0605
■71020▼aUniversity  of  Colorado  at  Boulder▼bPhysics.
■7730  ▼tDissertations  Abstracts  International▼g86-03B.
■790    ▼a0051
■791    ▼aPh.D.
■792    ▼a2024
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17163430▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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