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1.
Phys Rev E ; 96(1-1): 012404, 2017 Jul.
Article in English | MEDLINE | ID: mdl-29347215

ABSTRACT

Microtubules provide the mechanical force required for chromosome separation during mitosis. However, little is known about the dynamic (high-frequency) mechanical properties of microtubules. Here, we theoretically propose to control the vibrations of a doubly clamped microtubule by tip electrodes and to detect its motion via the optomechanical coupling between the vibrational modes of the microtubule and an optical cavity. In the presence of a red-detuned strong pump laser, this coupling leads to optomechanical-induced transparency of an optical probe field, which can be detected with state-of-the art technology. The center frequency and line width of the transparency peak give the resonance frequency and damping rate of the microtubule, respectively, while the height of the peak reveals information about the microtubule-cavity field coupling. Our method opens the new possibilities to gain information about the physical properties of microtubules, which will enhance our capability to design physical cancer treatment protocols as alternatives to chemotherapeutic drugs.


Subject(s)
Microtubules , Nanotechnology , Optical Devices , Vibration , Biomechanical Phenomena , Elasticity , Equipment Design , Lasers , Microtubules/chemistry , Microtubules/metabolism , Models, Biological
2.
Phys Rev Lett ; 109(13): 130503, 2012 Sep 28.
Article in English | MEDLINE | ID: mdl-23030075

ABSTRACT

We describe a reversible quantum interface between an optical and a microwave field using a hybrid device based on their common interaction with a micromechanical resonator in a superconducting circuit. We show that, by employing state-of-the-art optoelectromechanical devices, one can realize an effective source of (bright) two-mode squeezing with an optical idler (signal) and a microwave signal, which can be used for high-fidelity transfer of quantum states between optical and microwave fields by means of continuous variable teleportation.

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