| LDR |  | 00000nmm u2200205   4500 | 
| 001 |  | 000000331462 | 
| 005 |  | 20241118172624 | 
| 008 |  | 181129s2018    |||    |   | |      eng d | 
| 020 |  | ▼a 9780438270084 | 
| 035 |  | ▼a (MiAaPQ)AAI10928081 | 
| 035 |  | ▼a (MiAaPQ)wisc:15588 | 
| 040 |  | ▼a MiAaPQ
    ▼c MiAaPQ
    ▼d 248032 | 
| 049 | 1 | ▼f DP | 
| 082 | 0 | ▼a 530 | 
| 100 | 1 | ▼a Knapp, Trevor J. | 
| 245 | 10 | ▼a Cryogenic Measurement of Gate-defined Quantum Dots in Si/SiGe Heterostructures for Quantum Computation. | 
| 260 |  | ▼a [S.l.] :
    ▼b The University of Wisconsin - Madison.,
    ▼c 2018 | 
| 260 | 1 | ▼a Ann Arbor :
    ▼b ProQuest Dissertations & Theses,
    ▼c 2018 | 
| 300 |  | ▼a 107 p. | 
| 500 |  | ▼a Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B. | 
| 500 |  | ▼a Adviser: Mark A. Eriksson. | 
| 502 | 1 | ▼a Thesis (Ph.D.)--The University of Wisconsin - Madison, 2018. | 
| 520 |  | ▼a This thesis describes work towards building a quantum computer out of gate-defined quantum dots in Si/SiGe heterostructures and primarily addresses two of the DiVencenzo criteria: scalability and measurement. | 
| 520 |  | ▼a Chapters one and two provide an introduction to quantum computation and top-gated semiconductor quantum dots, with notes about the fabrication of quantum dots, modeling quantum dots with a simple capacitor model, the theory of Coulomb blockade t | 
| 520 |  | ▼a Chapter three presents data from characterization of the first quantum dot in a Si/SiGe nanomembrane, a new material that may have applications for the scalability of Si/SiGe quantum dots. Previous to the work presented in chapter three, all gat | 
| 520 |  | ▼a Chapter four provides a practical guide to cryogenic amplification, which has been used to improve charge-sensing measurements inside a dilution refrigerator. The chapter first provides a brief outline of different cryogenic amplification techni | 
| 520 |  | ▼a Chapter five presents a study in how to improve heat sinking of a cryogenic amplifier in a dilution refrigerator so as to mitigate its detrimental impact on a nearby quantum dot. While the power consumption of a cryogenic amplifier can cause a s | 
| 590 |  | ▼a School code: 0262. | 
| 650 | 4 | ▼a Physics. | 
| 690 |  | ▼a 0605 | 
| 710 | 20 | ▼a The University of Wisconsin - Madison.
    ▼b Physics. | 
| 773 | 0 | ▼t Dissertation Abstracts International
    ▼g 79-12B(E). | 
| 773 |  | ▼t Dissertation Abstract International | 
| 790 |  | ▼a 0262 | 
| 791 |  | ▼a Ph.D. | 
| 792 |  | ▼a 2018 | 
| 793 |  | ▼a English | 
| 856 | 40 | ▼u http://www.riss.kr/pdu/ddodLink.do?id=T15000882
    ▼n KERIS | 
| 980 |  | ▼a 201812
    ▼f 2019 | 
| 990 |  | ▼a 관리자
    ▼b 관리자 |