Applied Physics Letters · 2002 · 93 citations · 18 references
EngineeringMagnetic GradiometerSquid-based BiosensorQuantum SensingMagnetic SensorMagnetismQuantum ComputingSuperconductivityQuantum MaterialsNanosensorSuperconducting DevicesBiophysicsGradiometer-based MicroscopeQuantum SciencePhysicsQuantum DeviceHigh-transition TemperatureMagnetic MeasurementQuantum TechnologyBioelectronicsApplied PhysicsQuantum Interference DeviceQuantum Devices
We describe a gradiometer based on a high-transition temperature superconducting quantum interference device (SQUID) that improves the sensitivity of a SQUID-based biosensor. The first-derivative gradiometer, fabricated from a single layer of YBa2Cu3O7−x, has a baseline of 480 μm and a balance against uniform fields of 1 part in 150. Used in our SQUID “microscope,” it reduces the response to parasitic magnetic fields generated by the measurement process to the level of the SQUID noise. The gradiometer-based microscope is two orders of magnitude more sensitive to superparamagnetic nanoparticles bound to biological targets than our earlier magnetometer-based microscope.
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Ultrasensitive magnetic biosensor for homogeneous immunoassay
Yann R. Chemla, H. L. Grossman, Y. S. Poon et al. · Proceedings of the National Academy of Sciences · 2000 · 419 citations · Full text
Flicker (1/f) noise in tunnel junction dc SQUIDS
R. H. Koch, John Clarke, W. M. Goubau et al. · Journal of Low Temperature Physics · 1983 · 194 citations