by a differential delay of various wavelengths of light in a waveguide material(passive) caused bydispersion
different group / phase velocity of the light depending on its frequency(passive) is caused byDispersion
by light traveling in both the core and cladding materials in single - mode fibers(passive) caused bydispersion
light traveling in both the core and cladding materials in single mode fibers(passive) caused bydispersion
because friction is reducedcausinglaminar dispersion
by the different axial speeds of different transverse modes(passive) caused byIntermodal dispersion
by the various axial speeds of various transverse modes(passive) caused byIntermodal dispersion
by differential optical path lengths in a multimode fiber(passive) caused bydispersion
by standard single - mode fiber(passive) caused bythe dispersion
the frequency dependence of the group velocity of a light signal propagating inside a fiber(passive) can also be caused byDispersion
light of different wavelengths(passive) caused bythe dispersion
by the difference in polarization / phase / wavelength of the optical signal(passive) caused bydispersion
the the tendency of materials to refract different wavelengths of light to a different degree(passive) is caused byDispersion
by the variations with the wavelength in the propagation speed of the optical signal(passive) caused bydispersion
strong inversions combined with low windspeeds at night(passive) caused byinhibited dispersion
by the one or more dispersion elements(passive) caused bydispersion
modal dispersion , in which different modes of a multimode optical fiber propagate at different group velocities(passive) may be caused byDispersion
by natural properties of the core material(passive) caused byDispersion
by difference of glass optical refraction index(passive) caused bydispersion
that light in multimode fiber travels in rays or " modes " that take different times to get to through the fibercausingdispersion
by the length of transmission fiber over a wavelength range of about 1555 nm(passive) caused bythe dispersion
by the length of transmission fiber over a wavelength range of 1555 nm(passive) caused bythe dispersion
by dispersion in characteristics of the semiconductor element(passive) caused bya dispersion
In any lens the refractive index will change with the wavelengthcausingdispersion
the various path lengths of the different modescauseddispersion
Support type and preparation methodinfluencedthe dispersion
even if their patterns are different , the propagation speed is differentthus causingthe dispersion
the different path lengths of the various modes(passive) caused bythe dispersion
by light passing through a lens(passive) caused bydispersion
by advection ( i.e. , transport caused by difference in fluid velocity(passive) caused bydispersion
PMD in fiber ... each component of the polarized light travels at a different speedcausingdispersion
by wavelengths of light(passive) caused bydispersion
to inflammationleadingto inflammation
from surface reflectionsresultingfrom surface reflections
to pulse compression and thus to an enhanced nonlinear interactionleadsto pulse compression and thus to an enhanced nonlinear interaction
white light , which consists of all possible colors ( better : wavelengths or frequencies ) to break up into all components when the light travels from one medium ( e.g. air ) to another ( e.g. watercauseswhite light , which consists of all possible colors ( better : wavelengths or frequencies ) to break up into all components when the light travels from one medium ( e.g. air ) to another ( e.g. water
light pulses in a fiber to spread in timecauseslight pulses in a fiber to spread in time
Chromatic aberrations ... the variation of a lens 's refractive index with wavelength(passive) are caused byChromatic aberrations ... the variation of a lens 's refractive index with wavelength
Chromatic Aberrations Chromatic aberrations ... the variation of a lens 's refractive index with wavelength(passive) are caused byChromatic Aberrations Chromatic aberrations ... the variation of a lens 's refractive index with wavelength
Chromatic aberrations ... the variation of the lens 's refractive index with wavelength(passive) are caused byChromatic aberrations ... the variation of the lens 's refractive index with wavelength
the group velocity of the medium to be larger than the speed of light in vacuumcausesthe group velocity of the medium to be larger than the speed of light in vacuum
different wavelengths , or colors of light ... to travel at different velocities in the fibercausesdifferent wavelengths , or colors of light ... to travel at different velocities in the fiber
effects(passive) caused byeffects
the spreading of the light pulse as it travels along the fibercausesthe spreading of the light pulse as it travels along the fiber
pulses to spread in optical fibers , degrading signals over long distances and ultimately resulting in bit errorscausespulses to spread in optical fibers , degrading signals over long distances and ultimately resulting in bit errors
pulse distortion and spreading of pulses in time domaincausespulse distortion and spreading of pulses in time domain
_ _ ... the variation of a lens 's refractive index with wavelength(passive) are caused by_ _ ... the variation of a lens 's refractive index with wavelength
the electrical pulse length and shape to change , since dispersion causes the pulse length to increasecausesthe electrical pulse length and shape to change , since dispersion causes the pulse length to increase
a spreading or broadening of an optical signalcausesa spreading or broadening of an optical signal
to an amplification of the particle production in the case of bosonsleadsto an amplification of the particle production in the case of bosons
light of different wavelengthscauseslight of different wavelengths
the optical pulses to spreadcausesthe optical pulses to spread
from the chromatic aberrations of lenscausedfrom the chromatic aberrations of lens
pulse distortion and spreading of pulsescausespulse distortion and spreading of pulses
to replace the the need for concomitant three weeks short of oraldesignedto replace the the need for concomitant three weeks short of oral
the spreading of the light pulsecausesthe spreading of the light pulse
the spatial separation of a white light into spectral components of different wavelengthscausesthe spatial separation of a white light into spectral components of different wavelengths
a broadening of input pulses along the length of the fibercausesa broadening of input pulses along the length of the fiber
a broadening of input pulses along the length of the fibercausesa broadening of input pulses along the length of the fiber
a broadening or spreading of light as it propagates along the length of the fibercausesa broadening or spreading of light as it propagates along the length of the fiber
from the different velocities of each wavelength in a materialresultingfrom the different velocities of each wavelength in a material
to replace need for concomitant three weeks of oral Vdesignedto replace need for concomitant three weeks of oral V
pulse broadening and pulse distortioncausespulse broadening and pulse distortion
a broadening or spreading of lightcausesa broadening or spreading of light
the spatial separation of a white light into components of different wavelengths ( different colorscausesthe spatial separation of a white light into components of different wavelengths ( different colors
chromatic aberration ... a fringe of color that blurs the imagecauseschromatic aberration ... a fringe of color that blurs the image
light pulses to slow downalso causeslight pulses to slow down
only of the carbon material and a dispersion mediumcomposedonly of the carbon material and a dispersion medium
the colors of light to separatecausesthe colors of light to separate
to replace need for concomitant three weeksdesignedto replace need for concomitant three weeks
to replace her need for concomitant three weeksdesignedto replace her need for concomitant three weeks