Detection and susceptibility measurements of a single Dynal bead

Di Michele, Lorenzo, Shelly, Connor, de Marco, Patrizia, See, Patrick, Cox, David and Kazakova, Olga

(2011)

Di Michele, Lorenzo, Shelly, Connor, de Marco, Patrizia, See, Patrick, Cox, David and Kazakova, Olga (2011) Detection and susceptibility measurements of a single Dynal bead. Journal of Applied Physics, 110 (6).

Our Full Text Deposits

Full text access: Open

Full text file - 1.18 MB

Links to Copies of this Item Held Elsewhere


Abstract

In this work we present detection and susceptibility measurement experiments on a single superparamagnetic Dynal bead with a diameter of 1 mu m and a magnetic moment of approximate to 4 x 10(8) mu(B). Accurate bead positioning was achieved via non-invasive AFM nanomanipulation. The detection and magnetic characterization of the bead were performed using ultra-sensitive InSb Hall devices. Single bead detection was demonstrated using a step-wise change of the dc magnetic field; measurements were performed using only the in-phase component of the total ac Hall voltage. Very clear evidence of the bead presence is demonstrated simultaneously with explicit separation of parasitic inductive signals. Additional experiments performed using a sweeping change of the dc field allowed susceptibility measurements of a single Dynal bead. The numerical outcomes of both sweeping and stepping experiments are in a very good agreement. The method presented here opens up new possibilities for the reliable and accurate detection of small magnetic moments, which is of high importance for metrological applications as well as highly sensitive biological, medical, and environmental detectors. [doi:10.1063/1.3638124]

Information about this Version

This is a Submitted version
This version's date is: 15/9/2011
This item is not peer reviewed

Link to this Version

https://repository.royalholloway.ac.uk/items/864f5e6e-4ba5-0678-8ba5-7147702f2f5b/3/

Item TypeJournal Article
TitleDetection and susceptibility measurements of a single Dynal bead
AuthorsDi Michele, Lorenzo
Shelly, Connor
de Marco, Patrizia
See, Patrick
Cox, David
Kazakova, Olga
Uncontrolled KeywordsHALL SENSOR
DepartmentsFaculty of Science\Physics
Research Groups and Centres\Physics\Low Temperature Physics

Identifiers

doihttp://dx.doi.org/10.1063/1.3638124

Deposited by Research Information System (atira) on 03-Jul-2014 in Royal Holloway Research Online.Last modified on 03-Jul-2014


Details