Periodic Reporting for period 1 - N2PCON (Nanostructures and nanoelectromechanical devices for precise control of topological defects/matter in superfluid helium)
Período documentado: 2022-08-01 hasta 2024-08-31
By accomplishing these goals, new tools would be introduced to the research community of quantum fluids, largely accelerating the development of this field. The nanodevices developed in this project could also be exploited in other research communities like medical science, microelectronics, etc.
2. By developing a new electron beam lithography patterning technique, I successfully accomplished patterning of an array of circles (11 nm-13 nm) which can be used for the creation of the high-aspect ratio nanostrands. The resulted nanostrands are with 11 nm-13 nm diameter and 200 nm of height, which will satisfy the measurement scheme in liquid He-3.
3. Variation of the nanostrand structures (random structures without an array) were also developed and collaborated with other researchers for more application scenarios. A robust superhydrophobic surface was demonstrated and an optical diffuser application was also demonstrated. The optical diffuser shows light concentration capability which can be used to increase the performance of solar cells.
1. In the future, both the oscillator and nanostrands can be deeply integrated with silicon MEMS devices (microgear systems, etc.) to allow more degrees of freedom. In this scenario, more complex measurement in liquid He-3 can be set up.
2. Regarding the oscillator, medical applications like molecular detection can be developed.