We report on the design and performance of a cryogenic (300 mK) near-field scanning microwave microscope. It uses a microwave resonator as the near-field sensor, operating at a frequency of 6 GHz and microwave probing amplitudes down to 100 μV, approaching low enough photon population (N ∼ 1000) of the resonator such that coherent quantum manipulation becomes feasible. The resonator is made out of a miniaturized distributed fractal superconducting circuit that is integrated with the probing tip, micromachined to be compact enough such that it can be mounted directly on a quartz tuning-fork, and used for parallel operation as an atomic force microscope (AFM). The resonator is magnetically coupled to a transmission line for readout, and to ac...
A novel scanning-probe setup is reported that maps the complex transmission of microwaves. Response ...
Near-field microwave microscopy is a rapidly evolving technique that can spatially resolve material ...
Near-field microwave microscopy is developped in two frequency bands. The first experiment involves ...
We report on the design and performance of a cryogenic (300 mK) near-field scanning microwave micros...
\ua9 2019, The Author(s). The microwave properties of nano-scale structures are important in a wide ...
In this thesis we use high-Q superconducting thin-film microwave resonators to interact with several...
In the field of circuit quantum electrodynamics (c-QED), the coherent interaction of two-level syste...
Near field Scanning Microwave Microscopy (NSMM) is a scanning probe technique that non-invasively ca...
International audienceThe main objectives of this work are the development of fundamental extensions...
Devices relying on microwave circuitry form a cornerstone of many classical and emerging quantum tec...
The focus in this master thesis project was to calibrate the near field scanning microwave microscop...
4 pagesInternational audienceWe demonstrate the combination of scanning force microscopy and scannin...
In this thesis, we address the design and application of a microscope and probes for near-field scan...
This dissertation presents an investigation on the capabilities of Near-Field Microwave Microscopy (...
Scanning Microwave Microscopy is a relatively recent and promising technique that is approaching te...
A novel scanning-probe setup is reported that maps the complex transmission of microwaves. Response ...
Near-field microwave microscopy is a rapidly evolving technique that can spatially resolve material ...
Near-field microwave microscopy is developped in two frequency bands. The first experiment involves ...
We report on the design and performance of a cryogenic (300 mK) near-field scanning microwave micros...
\ua9 2019, The Author(s). The microwave properties of nano-scale structures are important in a wide ...
In this thesis we use high-Q superconducting thin-film microwave resonators to interact with several...
In the field of circuit quantum electrodynamics (c-QED), the coherent interaction of two-level syste...
Near field Scanning Microwave Microscopy (NSMM) is a scanning probe technique that non-invasively ca...
International audienceThe main objectives of this work are the development of fundamental extensions...
Devices relying on microwave circuitry form a cornerstone of many classical and emerging quantum tec...
The focus in this master thesis project was to calibrate the near field scanning microwave microscop...
4 pagesInternational audienceWe demonstrate the combination of scanning force microscopy and scannin...
In this thesis, we address the design and application of a microscope and probes for near-field scan...
This dissertation presents an investigation on the capabilities of Near-Field Microwave Microscopy (...
Scanning Microwave Microscopy is a relatively recent and promising technique that is approaching te...
A novel scanning-probe setup is reported that maps the complex transmission of microwaves. Response ...
Near-field microwave microscopy is a rapidly evolving technique that can spatially resolve material ...
Near-field microwave microscopy is developped in two frequency bands. The first experiment involves ...