S
Sharath Ananthamurthy
Researcher at Bangalore University
Publications - 52
Citations - 293
Sharath Ananthamurthy is an academic researcher from Bangalore University. The author has contributed to research in topics: Optical tweezers & Video microscopy. The author has an hindex of 8, co-authored 49 publications receiving 257 citations. Previous affiliations of Sharath Ananthamurthy include University of Hyderabad.
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Reversible thermal behavior of the layered double hydroxide of Mg with Al: Mechanistic studies
TL;DR: In this article, a simple oxide mixture of MgO and Al2O3 was found to yield a LDH-like phase when soaked in an aqueous solution of a suitable anion, suggesting that the reconstruction occurs through a simple dissolution-reprecipitation mechanism.
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Instabilities of an electron cloud in a Penning trap
TL;DR: In this paper, the authors measured the storage instabilities of electrons in a Penning trap at low magnetic fields, and found that these instabilities occur at the same positions when the trapping voltage is expressed as a percentage of the maximum voltage, given by the stability limit.
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Fast shuttling of ions in a scalable Penning trap array
TL;DR: The design and testing of an array of Penning ion traps made from printed circuit board enables fast shuttling of ions from one trapping zone to another, which could be of use in quantum information processing.
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Orientational dynamics of human red blood cells in an optical trap.
Praveen Parthasarathi,B. V. Nagesh,Yogesha Lakkegowda,Shruthi S. Iyengar,Sharath Ananthamurthy,Sarbari Bhattacharya +5 more
TL;DR: It is proposed that the value of energy used for maximum deformation possible during a reorientation process is an indicator of the membrane elasticity of the system under study.
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Birefringence of a normal human red blood cell and related optomechanics in an optical trap.
B. V. Nagesh,Yogesha,R. Pratibha,Praveen Parthasarathi,Shruthi S. Iyengar,Sarbari Bhattacharya,Sharath Ananthamurthy +6 more
TL;DR: It is observed that RBCs reconstituted in shape subsequent to crenation show diminished birefringence along with a sluggish optomechanical response in a trap, which lends credence to the conjecture on the origin of bireFringence.