Pockels effect - traducción al ruso
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Pockels effect - traducción al ruso

APPEARANCE OR CHANGE OF BIREFRINGENCE IN AN OPTICAL MEDIUM BY AN APPLIED ELECTRIC FIELD
Pockel's effect; Pockels Effect; Pockels cell; Pockels electro-optic effect
  • A schematic of a Pockels cell modulating the polarization of light. In this case, the Pockels cell is acting as a quarter wave plate, where linearly polarized light is converted to circularly polarized light. With the addition of a Brewster window (on the left) this change in polarization can be converted to a change in the intensity of the beam, by transmitting only the p-polarized vector component.

Pockels effect         

физика

эффект Поккельса

thermoelectricity         
  • thermoelectric cooler]]
  • doped]] and n-doped semiconductors), configured as a [[thermoelectric generator]]. If the load resistor at the bottom is replaced with a [[voltmeter]], the circuit then functions as a temperature-sensing [[thermocouple]].
DIRECT CONVERSION OF TEMPERATURE DIFFERENCES TO ELECTRIC VOLTAGE AND VICE VERSA
Peltier effect; Seebeck effect; Peltier Effect; Thermoelectric; Thomson effect; Thomson Effect; Seebeck Effect; Thermoelectric Effect; Peltier junction; Peltier-Seebeck effect; Seeback effect; Peltier–Seebeck effect; Thompson effect; Peltier device or Peltier heat pump; Water chiller cool rod; Thomson coefficient; Peltier coefficient; Peltier constant; Peltier Junction; Peltier plate; Thermoelectricity; Thermoelectric plate; Thermoelectric plates; Thermocell; Second Thomson relation; Thomson relations; Peltier panel; Peltier cell

общая лексика

термоэлектричество

Peltier effect         
  • thermoelectric cooler]]
  • doped]] and n-doped semiconductors), configured as a [[thermoelectric generator]]. If the load resistor at the bottom is replaced with a [[voltmeter]], the circuit then functions as a temperature-sensing [[thermocouple]].
DIRECT CONVERSION OF TEMPERATURE DIFFERENCES TO ELECTRIC VOLTAGE AND VICE VERSA
Peltier effect; Seebeck effect; Peltier Effect; Thermoelectric; Thomson effect; Thomson Effect; Seebeck Effect; Thermoelectric Effect; Peltier junction; Peltier-Seebeck effect; Seeback effect; Peltier–Seebeck effect; Thompson effect; Peltier device or Peltier heat pump; Water chiller cool rod; Thomson coefficient; Peltier coefficient; Peltier constant; Peltier Junction; Peltier plate; Thermoelectricity; Thermoelectric plate; Thermoelectric plates; Thermocell; Second Thomson relation; Thomson relations; Peltier panel; Peltier cell

полупроводники

электротермический эффект Пельтье

Definición

Peltier Effect
The thermal effect produced by the passage of a current through the junction of two unlike conductors. Such junction is generally the seat of thermo-electric effects, and a current is generally produced by heating such a junction. If an independent current is passed in the same direction as that of the thermoelectric current, it cools the junction, and warms it if passed in the other direction. In general terms, referring to thermo-electric couples, if passed through them it tends to cool the hot and heat the cool junction. The phenomenon does not occur in zinc-copper junctions.

Wikipedia

Pockels effect

The Pockels effect or Pockels electro-optic effect, also known as the linear electro-optic effect, is named after Friedrich Carl Alwin Pockels who studied the effect in 1893. The Pockels effect is a directionally dependent linear variation in the refractive index of an optical medium that occurs in response to the application of an electric field. The Kerr effect is comparable but causes changes in the refractive index at a rate proportional to the square of the applied electric field. In optical media susceptible to the Pockels effect, the Pockels effect causes changes in birefringence that vary in proportion to the strength of the applied electric field. The Pockels effect occurs in crystals that lack inversion symmetry, such as KH2PO4 (KDP), KD2PO4 (KD*P or DKDP), lithium niobate (LiNbO3), and in other non-centrosymmetric media such as electric-field poled polymers or glasses. The Pockels effect has been elucidated through extensive study of electro-optic properties in materials like KDP.

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