coherent fluctuation
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2019 ◽  
Vol 9 (2) ◽  
pp. 385-392
Author(s):  
A. S. Gur’ev ◽  
O. Yu. Shalatova ◽  
E. V. Rusanova ◽  
I. V. Vasilenko ◽  
A. Yu. Volkov

In this article data concerning coherent fluctuation nephelometry (CFN) use in clinical microbiology is presented. CFN-analyzer allows to solve two important problems – fast urine screening for bacteriuria within 2-4 hours and antibiotic susceptibility testing within 3-6 hours. Altogether more than 650 urine samples were tested, and the effectivity of CFN-analyzer for preliminary selection of samples for further analysis was shown. Method allows to detect negative samples, reducing the number of urine analyses by 70-80%. Simultaneous analysis of growth curves and concentration of microorganisms shows high sensitivity and specificity (95.2% и 96.9%). Also more than 250 antibiotic susceptibility tests were performed using CFN-analyzer to show its effectiveness for determination of resistant properties of both pure cultures and urine microflora without isolation of bacteria. The agreement with traditional methods was from 84% to 88%. The use of CFN-analyzer with express methods of identification of microorganisms (chromogenic nutrient broths or mass-spectrometry) allows to make full urine analysis within 1-2 days. In the future CFN-analyzer gives an opportunity to screen different human biological liquids, and finds an application for other microbiological tasks, including standardization and speeding-up in sanitary bacteriology.


Quantum ◽  
2019 ◽  
Vol 3 ◽  
pp. 124 ◽  
Author(s):  
Zoë Holmes ◽  
Sebastian Weidt ◽  
David Jennings ◽  
Janet Anders ◽  
Florian Mintert

Recent studies using the quantum information theoretic approach to thermodynamics show that the presence of coherence in quantum systems generates corrections to classical fluctuation theorems. To explicate the physical origins and implications of such corrections, we here convert an abstract framework of an autonomous quantum Crooks relation into quantum Crooks equalities for well-known coherent, squeezed and cat states. We further provide a proposal for a concrete experimental scenario to test these equalities. Our scheme consists of the autonomous evolution of a trapped ion and uses a position dependent AC Stark shift.


2019 ◽  
Vol 12 (24) ◽  
pp. 33-42
Author(s):  
Hasan F. Ojaimi

The nucleon momentum distributions (NMD) and elastic electron scattering form factors of the ground state for some 1f-2p-shell nuclei, such as 58Ni, 60Ni, 62Ni, and 64Niisotopes have been calculated in the framework of the coherent fluctuation model (CFM) and expressed in terms of the weight function lf(x)l2 . The weight function (fluctuation function) has been related to the nucleon density distribution (NDD) of the nuclei and determined from the theory and experiment. The NDD is derived from a simple method based on the use of the single particle wave functions of the harmonic oscillator potential and the occupation numbers of the states. The feature of the long-tail behavior at high momentum region of the NMD’s has been obtained by both the theoretical and experimental weight functions. The calculated elastic electron scattering form factors for considered isotopes are in reasonable agreement with those of experimental data throughout all values of momentum transfer q.


2018 ◽  
Vol 12 ◽  
pp. e00106 ◽  
Author(s):  
Alexander S. Gur’ev ◽  
Irina E. Yudina ◽  
Anna V. Lazareva ◽  
Alexey Yu. Volkov

2018 ◽  
Vol 60 (11) ◽  
pp. 115009 ◽  
Author(s):  
W Lee ◽  
J Leem ◽  
D J Lee ◽  
M J Choi ◽  
H K Park ◽  
...  

Author(s):  
A. S. Gur’ev ◽  
O. Yu. Kuznetsova ◽  
L. A. Kraeva ◽  
S. F. Rastopov ◽  
V. N. Verbov ◽  
...  
Keyword(s):  

2017 ◽  
Vol 6 (4) ◽  
pp. 395-398 ◽  
Author(s):  
A. S. Gur’ev ◽  
O. Yu. Kuznetsova ◽  
M. F. Pyasetskaya ◽  
I. A. Smirnova ◽  
N. A. Belyaeva ◽  
...  

2015 ◽  
Vol 159 (3) ◽  
pp. 412-412 ◽  
Author(s):  
A. S. Gur’ev ◽  
A. Yu. Volkov ◽  
I. I. Dolgushin ◽  
A. V. Pospelova ◽  
S. F. Rastopov ◽  
...  

2015 ◽  
Vol 159 (1) ◽  
pp. 107-110 ◽  
Author(s):  
A. S. Gur’ev ◽  
A. Yu. Volkov ◽  
I. I. Dolgushin ◽  
A. V. Pospelova ◽  
S. F. Rastopov ◽  
...  

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