Milan S Kovacevic
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Explore the profile of Milan S Kovacevic including associated specialties, affiliations and a list of published articles.
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Articles
6
Citations
10
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Recent Articles
1.
Savovic S, Simovic A, Drljaca B, Kovacevic M, Kuzmanovic L, Djordjevich A, et al.
Polymers (Basel)
. 2023 Jun;
15(11).
PMID: 37299381
The authors wish to make three changes to their published paper [...].
2.
Savovic S, Simovic A, Drljaca B, Kovacevic M, Kuzmanovic L, Djordjevich A, et al.
Polymers (Basel)
. 2023 Mar;
15(6).
PMID: 36987254
We investigate mode coupling in a multimode graded-index microstructured polymer optical fiber (GI mPOF) with a solid core by solving the time-independent power flow equation (TI PFE). Using launch beams...
3.
Drljaca B, Savovic S, Kovacevic M, Simovic A, Kuzmanovic L, Djordjevich A, et al.
Opt Express
. 2022 Oct;
30(14):24667-24675.
PMID: 36237015
By solving the time-independent power flow equation (TI PFE), we study mode coupling in a multimode W-type microstructured polymer optical fiber (mPOF) with a solid-core. The multimode W-type mPOF is...
4.
Drljaca B, Savovic S, Kovacevic M, Simovic A, Kuzmanovic L, Djordjevich A, et al.
Polymers (Basel)
. 2021 Dec;
13(23).
PMID: 34883721
By solving the time-dependent power flow equation, we present a novel approach for evaluating the bandwidth in a multimode step-index polymer photonic crystal fiber (SI PPCF) with a solid core....
5.
Savovic S, Drljaca B, Kovacevic M, Djordjevich A, Bajic J, Stupar D, et al.
Appl Opt
. 2014 Nov;
53(30):6999-7003.
PMID: 25402786
By experimental measurement and from a numerical solution to the time-dependent power flow equation, the frequency response, bandwidth, mode coupling, and mode-dependent attenuation are determined for a low-numerical-aperture (NA) plastic...
6.
Kovacevic M, Nikezic D, Djordjevich A
Appl Opt
. 2005 Jul;
44(19):3898-903.
PMID: 16004034
The core-cladding boundary in step-index plastic optical fibers is imperfect. Surface irregularities locked in during the manufacturing process couple the guided modes by reflecting them in directions that deviate unpredictably...