scholarly journals Ultra-high precision x-ray polarimetry with artificial diamond channel cuts at the beam divergence limit

2020 ◽  
Vol 2 (2) ◽  
Author(s):  
Hendrik Bernhardt ◽  
Annika T. Schmitt ◽  
Benjamin Grabiger ◽  
Berit Marx-Glowna ◽  
Robert Loetzsch ◽  
...  
Author(s):  
R. Hutchings ◽  
I.P. Jones ◽  
M.H. Loretto ◽  
R.E. Smallman

There is increasing interest in X-ray microanalysis of thin specimens and the present paper attempts to define some of the factors which govern the spatial resolution of this type of microanalysis. One of these factors is the spreading of the electron probe as it is transmitted through the specimen. There will always be some beam-spreading with small electron probes, because of the inevitable beam divergence associated with small, high current probes; a lower limit to the spatial resolution is thus 2αst where 2αs is the beam divergence and t the specimen thickness.In addition there will of course be beam spreading caused by elastic and inelastic interaction between the electron beam and the specimen. The angle through which electrons are scattered by the various scattering processes can vary from zero to 180° and it is clearly a very complex calculation to determine the effective size of the beam as it propagates through the specimen.


Author(s):  
J. C. Russ ◽  
T. Taguchi ◽  
P. M. Peters ◽  
E. Chatfield ◽  
J. C. Russ ◽  
...  

Conventional SAD patterns as obtained in the TEM present difficulties for identification of materials such as asbestiform minerals, although diffraction data is considered to be an important method for making this purpose. The preferred orientation of the fibers and the spotty patterns that are obtained do not readily lend themselves to measurement of the integrated intensity values for each d-spacing, and even the d-spacings may be hard to determine precisely because the true center location for the broken rings requires estimation. We have implemented an automatic method for diffraction pattern measurement to overcome these problems. It automatically locates the center of patterns with high precision, measures the radius of each ring of spots in the pattern, and integrates the density of spots in that ring. The resulting spectrum of intensity vs. radius is then used just as a conventional X-ray diffractometer scan would be, to locate peaks and produce a list of d,I values suitable for search/match comparison to known or expected phases.


1996 ◽  
Vol 14 (3) ◽  
pp. 971-976 ◽  
Author(s):  
N. Awaji ◽  
Y. Sugita ◽  
T. Nakanishi ◽  
S. Ohkubo ◽  
K. Takasaki ◽  
...  
Keyword(s):  

1997 ◽  
Vol 15 (1) ◽  
pp. 133-138 ◽  
Author(s):  
A.M. Buyko ◽  
O.M. Burenkov ◽  
V.K. Chernyshev ◽  
S.F. Garanin ◽  
S.D. Kuznetsov ◽  
...  

Powerful pulse installations are usually used to produce large yields of X-ray radiation. With an increase of the stored energy up to 100 MJ, the costof a single experiment on these installations becomes comparable to the cost of a shot with explosive magnetic generators (EMG), according to expert estimates. The physical scheme of a device with a changeable mass liner forlarge soft X-ray (in the range of 0.3 to 0.5 keV) yields eneration is investigated. The scheme investigated is substantially free from difficulties connected with high precision liners and fast switches for current pulse sharpening.


2021 ◽  
Vol 50 (1) ◽  
pp. 156-164
Author(s):  
吴鹿杰 Lujie WU ◽  
文庆涛 Qingtao WEN ◽  
高雅增 Yazeng GAO ◽  
卢维尔 Weier LU ◽  
夏洋 Yang XIA ◽  
...  

Author(s):  
L. I. Goray ◽  
E. V. Pirogov ◽  
M. V. Svechnikov ◽  
M. S. Sobolev ◽  
N. K. Polyakov ◽  
...  

Author(s):  
Alexander Kiy ◽  
Christian Notthoff ◽  
Shankar Dutt ◽  
Mark Grigg ◽  
Andrea Hadley ◽  
...  

In situ small angle X-ray scattering (SAXS) measurements of ion track etching of polycarbonate foils are used to directly monitor the selective dissolution of ion tracks with high precision, including...


1968 ◽  
pp. 359-375 ◽  
Author(s):  
T. W. Baker ◽  
J. D. George ◽  
B. A. Bellamy ◽  
R. Causer

1988 ◽  
Vol 59 (3) ◽  
pp. 420-422 ◽  
Author(s):  
Andrew M. Hawryluk ◽  
Sherry L. Hill

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