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Transverse mass of a bubble in a rotating gradient

 

作者: J. C. Slonczewski,  

 

期刊: Journal of Applied Physics  (AIP Available online 1979)
卷期: Volume 50, issue B11  

页码: 7850-7852

 

ISSN:0021-8979

 

年代: 1979

 

DOI:10.1063/1.326788

 

出版商: AIP

 

数据来源: AIP

 

摘要:

We propose principles for interpreting magnetic‐bubble dynamics in a rotating‐gradient experiment when no external in‐plane field is present. If the orbit of the bubble is circular, simultaneous determinations of radius and phase lag with respect to the drive may be interpreted to measure the mobility coefficient and the velocity‐momentum [V=V(P)] relation. Investigation of the stability of the circular orbit shows that in one limiting case the segments ofV(P) having a positive slope will be accessible to experiment. We illustrate dependences ofVonPexpected for static bubbles with 1) small numbers of vertical Bloch lines, 2) horizontal Bloch lines, and 3) large numbers of vertical Bloch lines. We conclude that rotating‐gradient measurements can determine the Bloch‐line structure of the circulating bubble. The basically new element present in such experiments is the transverse component of effective bubble mass, which differs from the longitudinal component and will be much greater than the Do¨ring mass whenever Bloch lines are present.

 

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