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Dive into the research topics where B. S. Karasik is active.

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Featured researches published by B. S. Karasik.


Applied Physics Letters | 1996

Noise temperature limit of a superconducting hot‐electron bolometer mixer

B. S. Karasik; A. I. Elantiev

A theoretical analysis for the noise temperature of a low‐temperature hot‐electron superconducting mixer has been presented. The contribution of both Johnson noise and electron temperature fluctuations has been evaluated. The theoretical limit of the single‐side band noise temperature of the device due to the intrinsic noise mechanisms has been estimated to be as low as 20–40 K, depending on the film material. The corresponding noise bandwidth can be as large as 2–3 GHz, for a device with the electron‐phonon cooling mechanism. An improvement of the sensitivity is not necessarily followed by a decrease of the mixer conversion gain bandwidth.


Journal of Applied Physics | 1994

Nonequilibrium and bolometric photoresponse in patterned YBa2Cu3O7−δ thin films

M. Danerud; Dag Winkler; M. Lindgren; M. A. Zorin; V. Trifonov; B. S. Karasik; G. N. Gol’tsman; E. M. Gershenzon

Epitaxial laser deposited YBa2Cu3O7−δ films of ∼50 nm thickness were patterned into detectors consisting of ten parallel 1 μm wide strips in order to study nonequilibrium and bolometric effects. Typically, the patterned samples had critical temperatures around 86 K, transition widths around 2 K and critical current densities above 1×106A/cm2 at 77 K. Pulsed laser measurements at 0.8 μm wavelength (17 ps full width at half maximum) showed a ∼30 ps response, attributed to electron heating, followed by a slower bolometric decay. Amplitude modulation in the band fmod=100 kHz–10 GHz of a laser with wavelength λ=0.8 μm showed two different thermal relaxations in the photoresponse. Phonon escape from the film (∼3 ns) is the limiting process, followed by heat diffusion in the substrate. Similar relaxations were also seen for λ=10.6 μm. The photoresponse measurements were made with the film in the resistive state and extended into the normal state. These states were created by supercritical bias currents. Measurem...


Applied Physics Letters | 1994

Optical mixing in a patterned YBa2Cu3O7−δ thin film

M. Lindgren; M. Zorin; V. Trifonov; M. Danerud; Dag Winkler; B. S. Karasik; G. N. Gol’tsman; E. M. Gershenzon

Mixing of 1.56 μm infrared radiation from two lasers in a high quality YBa2Cu3O7−δ thin film, patterned to parallel strips, was demonstrated. A mixer bandwidth of 18 GHz, limited by the measurement system, was obtained. A model based on nonequilibrium electron heating gives a good fit to the data and predicts an intrinsic mixer bandwidth in excess of 100 GHz, operating in the whole infrared spectrum. Reduction of bolometric effects and ways to decrease the conversion loss of the mixer is discussed. The minimum conversion loss is expected to be ∼10 dB.


Applied Physics Letters | 1994

Transient resistive photoresponse of YBa2Cu3O7−δ films using low power 0.8 and 10.6 μm laser radiation

M. Lindgren; V. Trifonov; M. Zorin; M. Danerud; Dag Winkler; B. S. Karasik; G. N. Gol’tsman; E. M. Gershenzon

Thin YBa2Cu3O7−δ laser deposited films were patterned into devices consisting of ten parallel 1 μm wide strips. Nonequilibrium picosecond and bolometric photoresponses were studied by the use of 17 ps full width at half‐maximum laser pulses and amplitude modulated radiation from an AlGaAs laser up to 10 GHz and from a CO2 laser up to 1 GHz. The time and frequency domain measurements were in agreement. The fast response can be explained by electron heating. The use of low optical power and a sensitive measurement system excluded any nonlinear transient processes and kinetic inductance changes in the superconducting state. At 1 GHz modulation frequency, the responsivity was ∼1.2 V/W both for 0.8 and 10.6 μm wavelengths. The sensitivity of a fast and spectrally broadband infrared detector is discussed.


Applied Physics Letters | 1996

9.6 μm wavelength mixing in a patterned YBa2Cu3O7‐δ thin film

V. Trifonov; B. S. Karasik; M. A. Zorin; G. N. Gol’tsman; E. M. Gershenzon; M. Lindgren; M. Danerud; Dag Winkler

Hot‐electron bolometric (HEB) mixing of 9.6 μm infrared radiation from two lasers in high‐quality YBa2Cu3O7−δ (YBCO) patterned thin film has been demonstrated. A heterodyne measurement showed an intermediate frequency (IF) bandwidth of 18 GHz, limited by our measurement system. An intrinsic limit of 100 GHz is predicted. Between 0.1 and 1 GHz intermediate frequency, temperature fluctuations with an equivalent output noise temperature Tfl up to ∼150 K, contributed to the mixer noise while Johnson noise dominated above 1 GHz. The overall conversion loss at 77 K at low intermediate frequencies was measured to be ∼25 dB, of which 13 dB was due to the coupling loss. The HEB mixer is very promising for use in heterodyne receivers within the whole infrared range.


Applied Physics Letters | 1996

Diffusion cooling mechanism in a hot‐electron NbC microbolometer mixer

B. S. Karasik; K. S. Il’in; E. V. Pechen; S. I. Krasnosvobodtsev

The crossover between the electron–phonon relaxation and the diffusion transport of hot electrons in an NbC microbolometer has been studied. At least an 80 ps relaxation time can be achieved in 0.2 μm long bridges of the material with a diffusivity of 8 cm2/s. The high diffusivity is accompanied by a large sheet resistance (≊10 Ω) that simplifies the match of the mixer device made of NbC to planar antenna at terahertz frequencies. The intrinsic noise mechanisms imply a very low mixer noise temperature of the order of a few tens of Kelvin, independent on the radiation frequency.


Journal of Applied Physics | 1992

Picosecond YBa2Cu3O7−δ detector for far‐infrared radiation

R. S. Nebosis; R. Steinke; P. T. Lang; W. Schatz; M. A. Heusinger; Karl Friedrich Renk; G. N. Gol’tsman; B. S. Karasik; A. D. Semenov; E. M. Gershenzon

We report on a picosecond YBa2Cu3O7−δ detector for far‐infrared radiation. The detector, consisting of a current carrying structure cooled to liquid‐nitrogen temperature, was studied by use of ultrashort laser pulses from an optically pumped far‐infrared laser in the frequency range from 25 to 215 cm−1. We found that the sensitivity (1 mV/W) was almost constant in this frequency range. We estimated a noise equivalent power of less than 5×10−7 W Hz−1/2. Taking into account the results of a mixing experiment (in the frequency range from 4 to 30 cm−1) we suggest that the response time of the detector was few picoseconds.


Journal of Applied Physics | 1995

Subnanosecond switching of YBaCuO films between superconducting and normal states induced by current pulse

B. S. Karasik; M. A. Zorin; I. Milostnaya; A. I. Elantev; G. N. Gol’tsman; E. M. Gershenzon

A study is reported of the current switching in high‐quality YBaCuO films deposited onto NdGaO3 and ZrO2 substrates between superconducting (S) and normal (N) states. The films 60–120 nm thick prepared by laser ablation were structured into single strips between gold contacts. The time dependence of the resistance after application of the voltage step to the film was monitored. Experiment performed within certain ranges of voltage amplitudes and temperatures has shown the occurrence of the fast stage (shorter than 400 ps) both in S‐N and N‐S transitions. A fraction of the film resistance changing within this stage in the S‐N transition increases with the current amplitude. A subnanosecond N‐S stage becomes more pronounced for shorter pulses. The fast switching is followed by the much slower change of resistance. The mechanism of switching is discussed in terms of the hot‐electron phenomena in YBaCuO. The contributions of other thermal processes (e.g., a phonon escape from the film, a heat diffusion in the...


Optics Letters | 1993

Ultrafast photoresponse of an YBa 2 Cu 3 O 7− δ film to far-infrared radiation pulses

Nebosis Rs; Heusinger Ma; Semenov Ad; Lang Pt; Schatz W; Steinke R; Karl Friedrich Renk; Gol'tsman Gn; B. S. Karasik; E. M. Gershenzon

We report the observation of an ultrafast photoresponse of a high-T(c), film to far-infrared radiation pulses. The response of a sample, consisting of a current-carrying structured YBa(2)Cu(3)O(7-delta) film cooled to liquid-nitrogen temperature, was studied by use of ultrashort laser pulses from an optically pumped far-infrared laser in the frequency range from 0.7 to 7 THz. We found that the response time was limited by the time resolution, 120 ps, of our electronic registration equipment.


Archive | 1993

Temperature Dependence of Bolometric and Non-Bolometric Photoresponse of a Structured YBa2Cu3O7−δ Thin Film

M. A. Heusinger; R. S. Nebosis; W. Schatz; Karl Friedrich Renk; G. N. Gol’tsman; B. S. Karasik; A. D. Semenov; G. M. Gershenzon

We investigated the temperature dependence of the transient voltage photoresponse of a current biased structured YBa2Cu3O7−δ thin film in its transition temperature region, around 79 K. Both, picosecond nonbolometric and nanosecond bolometric response to ultrashort far-infrared laser pulses were found for frequencies between 25 cm−1 and 215 cm−1. We will discuss optimum conditions for radiation detection and present an analysis of the dynamical behaviour of excited high T c thin films.

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E. M. Gershenzon

Moscow State Pedagogical University

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G. N. Gol’tsman

Moscow State Pedagogical University

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Dag Winkler

Chalmers University of Technology

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M. Danerud

Chalmers University of Technology

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M. Lindgren

Chalmers University of Technology

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A. D. Semenov

Moscow State Pedagogical University

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M. A. Zorin

Moscow State Pedagogical University

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V. Trifonov

Moscow State Pedagogical University

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