in practice, optical tweezers are very expensive, custom-built instruments. these instruments...

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Page 1: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope
Page 2: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope
Page 3: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope
Page 4: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

Pin Pout

Pleft

Pin Pout

Pright Pnet

Page 5: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

Pout Pin Pout Pin

Pleft Pright

Pnet

Page 6: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope but add extensive modifications. In addition, the capability to couple multiple lasers into the microscope poses another challenge. High power infrared laser beams are often used to achieve high trapping stiffness with minimal photo-damage to biological samples. Precise steering of the optical trap is accomplished with lenses, mirrors, and acousto/electro-optical devices that can be controlled via computer.

Page 7: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

Laser Tweezers and Transcription. A transcription complex is tethered between two streptavidin-coated beads and kept in a continuous buffer flow. As a transcribing polymerase moves along the DNA, it physically pulls the two beads closer together. One bead is held in place with laser tweezers (red funnel) and the other by a pipette. The separation of the beads is measured by video microscopy and used to determine the end-to-end distance of the DNA.

Page 8: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

If some external object, like a molecular motor, were to pull the bead away from the center of the trap, a restoring force would be imparted to the bead and thus to the motor. An example trace of a single kinesin motor taking 8 nm steps against a 5-pN force is shown

Page 9: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope
Page 10: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope
Page 11: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

Group Problem on Polarization

• A vertically polarized light beam is incident on two ideal polarizers P1 and P2 following one another with P1 oriented at 45o to the vertical and P2 oriented horizontally. If the incident intensity is 1 unit, what is the transmitted intensity after P2?

• What happens in the same situation if the incident light of 1 unit is unpolarized?

Page 12: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

102 104 106 108 1010 1012 1014 1016 1018 1020 1022

Wavelength (m)

Frequency (Hz)

3 x 104 3 x 10-4 3 x 10-8 3 x 10-12 3

Energy (eV) 4 x 105 4 x 101 4 x 10-3 4 x 10-7 4 x 10-11

Radio waves Infrared Gamma rays X-rays Ultra- violet

Visible Light

Long waves

Page 13: In practice, optical tweezers are very expensive, custom-built instruments. These instruments usually start with a commercial optical microscope

actin (red), vinculin (an adhesion plaque protein; green), and the nucleus (blue)