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| Indefinite-year visiting graduate student. | {{attachment:mebike.jpg}} |
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| If you're looking for me, you can find me in one of these places in the following order: 1. lab (80% of the chances) 2. with my bike on one of the hills around Pasadena (9%) 3. at the Caltech swimming pool (5%) 4. on the running track (5%) 5. at the E.R. of the Huntington Hospital (1%) |
Third year visiting graduate student from [[http://www.unisi.it|University of Siena]], [[http://www.unisi.it/fisica/dottorato/index.html|Graduate School in Physics]], [[http://picasaweb.google.com/alstoc/SienaEst70AD#|Siena, Italy]]. |
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| ... | Phone: . 40m: x2351/3980 . Bridge: xxxx |
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| ---- === To-Do List (short term) === * flip the Heliax-to-SMA panel on the 1Y1 rack |
Cellphone: 626-318-6448 (only for emergencies) |
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| === To-Buy List === * Stilton shoes * wireless mouse and keyboard |
----- === Plans === [[/thesisplan| Thesis Plan]] ----- [[/notebook| Notebook]] ----- === Things To Do === 1. measure phase noise of the FSS oscillator 1. measure phase noise of the Frequency Generation Box 1. build Frequency Distribution Box 1. complete PDs for the central part of the interferometer 1. calculate new Schnupp asymmetry for the 40m 1. calculate sideband modulation depth for the 40m 1. try to measure absolute length of recycling cavities: re-design and build the PLL 1. study the absolute length measuring technique: noise budget and precision limit of the measurement 1. study absolute length to frequency/intensity noise couplings: talk with Kentaro 1. write thesis ----- ==== To-Buy List ==== |
Alberto Stochino
Third year visiting graduate student from University of Siena, Graduate School in Physics, Siena, Italy.
Email: <stochino@ligo.caltech.edu>
Phone:
- 40m: x2351/3980
- Bridge: xxxx
Cellphone: 626-318-6448 (only for emergencies)
Plans
Things To Do
- measure phase noise of the FSS oscillator
- measure phase noise of the Frequency Generation Box
- build Frequency Distribution Box
- complete PDs for the central part of the interferometer
- calculate new Schnupp asymmetry for the 40m
- calculate sideband modulation depth for the 40m
- try to measure absolute length of recycling cavities: re-design and build the PLL
- study the absolute length measuring technique: noise budget and precision limit of the measurement
- study absolute length to frequency/intensity noise couplings: talk with Kentaro
- write thesis
