home libri books Fumetti ebook dvd top ten sconti 0 Carrello


Torna Indietro

hillberry logan edward - optically trapped microspheres as sensors of mass and sound

Optically Trapped Microspheres as Sensors of Mass and Sound Brownian Motion as Both Signal and Noise




Disponibilità: Normalmente disponibile in 15 giorni


PREZZO
162,98 €
NICEPRICE
154,83 €
SCONTO
5%



Questo prodotto usufruisce delle SPEDIZIONI GRATIS
selezionando l'opzione Corriere Veloce in fase di ordine.


Pagabile anche con Carta della cultura giovani e del merito, 18App Bonus Cultura e Carta del Docente


Facebook Twitter Aggiungi commento


Spese Gratis

Dettagli

Genere:Libro
Lingua: Inglese
Editore:

Springer

Pubblicazione: 11/2023
Edizione: 1st ed. 2023





Trama

This thesis makes significant advances in the use of microspheres in optical traps as highly precise sensing platforms. While optically trapped microspheres have recently proven their dominance in aqueous and vacuum environments, achieving state-of-the-art measurements of miniscule forces and torques, their sensitivity to perturbations in air has remained relatively unexplored. This thesis shows that, by uniquely operating in air and measuring its thermally-fluctuating instantaneous velocity, an optically trapped microsphere is an ultra-sensitive probe of both mass and sound. The mass of the microsphere is determined with similar accuracy to competitive methods but in a fraction of the measurement time and all while maintaining thermal equilibrium, unlike alternative methods. As an acoustic transducer, the air-based microsphere is uniquely sensitive to the velocity of sound, as opposed to the pressure measured by a traditional microphone. By comparison to state-of-the-art commercially-available velocity and pressure sensors, including the world’s smallest measurement microphone, the microsphere sensing modality is shown to be both accurate and to have superior sensitivity at high frequencies. Applications for such high-frequency acoustic sensing include dosage monitoring in proton therapy for cancer and event discrimination in bubble chamber searches for dark matter. In addition to reporting these scientific results, the thesis is pedagogically organized to present the relevant history, theory, and technology in a straightforward way.





Sommario

Chapter 1. Introduction.- Chapter 2. Technical Background.- Chapter 3. Experimental set-up.- Chapter 4. Results.- Chapter 5. Conclusions.






Autore

Logan completed his PhD in physics at the University of Texas at Austin in 2022 under the supervision of Professor Mark Raizen. Now, Logan continues to work as a postdoctoral fellow in the same group while coordinating his next position. Previously, he earned an MS in applied physics, under the supervision of Professor Lincoln Carr, and a BS in engineering physics from the Colorado School of Mines.  Logan has broad research interests ranging from acoustics to quantum many-body dynamics. He particularly enjoys numerics for simulation and data analysis, and building instruments to make new measurements.











Altre Informazioni

ISBN:

9783031443312

Condizione: Nuovo
Collana: Springer Theses
Dimensioni: 235 x 155 mm
Formato: Copertina rigida
Illustration Notes:XVI, 115 p. 44 illus., 39 illus. in color.
Pagine Arabe: 115
Pagine Romane: xvi


Dicono di noi