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Jesse Slim
Jesse Slim
在 uq.edu.au 的电子邮件经过验证
标题
引用次数
引用次数
年份
Visualizing the motion of graphene nanodrums
D Davidovikj, JJ Slim, SJ Cartamil-Bueno, HSJ Van Der Zant, ...
Nano letters 16 (4), 2768-2773, 2016
1102016
Dephasing mechanisms of diamond-based nuclear-spin memories for quantum networks
N Kalb, PC Humphreys, JJ Slim, R Hanson
Physical Review A 97 (6), 062330, 2018
862018
Non-Hermitian chiral phononics through optomechanically induced squeezing
J Del Pino, JJ Slim, E Verhagen
Nature 606 (7912), 82-87, 2022
722022
Exact rotating wave approximation
D Zeuch, F Hassler, JJ Slim, DP DiVincenzo
Annals of physics 423, 168327, 2020
562020
Quadrature nonreciprocity in bosonic networks without breaking time-reversal symmetry
CC Wanjura, JJ Slim, J del Pino, M Brunelli, E Verhagen, A Nunnenkamp
Nature Physics 19 (10), 1429-1436, 2023
122023
Optomechanical realization of the bosonic Kitaev chain
JJ Slim, CC Wanjura, M Brunelli, J Del Pino, A Nunnenkamp, E Verhagen
Nature 627 (8005), 767-771, 2024
52024
Optomechanical realization of the bosonic Kitaev-Majorana chain
JJ Slim, CC Wanjura, M Brunelli, J del Pino, A Nunnenkamp, E Verhagen
arXiv preprint arXiv:2309.05825, 2023
32023
Publisher Correction: Non-Hermitian chiral phononics through optomechanically induced squeezing
J Del Pino, JJ Slim, E Verhagen
Nature 611 (7936), E11-E11, 2022
12022
Enhancing optomechanical cooling through breaking time-reversal symmetry
JJ Slim, J del Pino, M Jansen, R Burgwal, E Verhagen
Photonic Heat Engines: Science and Applications VI, PC129020F, 2024
2024
Exponentially enhanced sensing in a non-Hermitian topological nanomechanical network
J Slim, C Wanjura, J del Pino, M Brunelli, A Nunnenkamp, E Verhagen
Quantum Sensing, Imaging, and Precision Metrology II, PC129120O, 2024
2024
Magnetic Fields for Phonons Through Nano-Optomechanical Interactions
JJ Slim, J del Pino, JP Mathew, E Verhagen
Frontiers in Optics, FW5C. 3, 2020
2020
Imaging the mode shapes of microdrum resonators
JJ Slim
2015
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