Search Results - "Mathine, D.L."

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  1. 1

    Analog CMOS Design for Optical Coherence Tomography Signal Detection and Processing by Xu, Wei, Mathine, David L., Barton, Jennifer K.

    “…A CMOS circuit was designed and fabricated for optical coherence tomography (OCT) signal detection and processing. The circuit includes a photoreceiver,…”
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    Journal Article
  2. 2

    Analog CMOS circuit design and characterization for optical coherence tomography signal processing by Kariya, R., Mathine, D.L., Barton, J.K.

    “…We have developed a custom analog CMOS circuit to perform the signal processing for an optical coherence tomography imaging system. The circuit is realized in…”
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    Journal Article
  3. 3

    Contactless electroreflectance characterization of three InGaAs quantum wells placed in a GaAs/AlGaAs resonant cavity by Moneger, S., Qiang, H., Pollak, F.H., Mathine, D.L., Droopad, R., Maracas, G.N.

    Published in Solid-state electronics (1996)
    “…Contactless electroreflectance at 300 K has been used to characterize an InGaAs/GaAs/AlGaAs vertical-cavity surface-emitting laser test structure, i.e. three…”
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    Journal Article
  4. 4

    The integration of III-V optoelectronics with silicon circuitry by Mathine, D.L.

    “…The integration of III-V optoelectronics with silicon circuitry provides the potential for fabricating dense parallel optical interconnects with data links…”
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    Journal Article
  5. 5

    A vertical-cavity surface-emitting laser appliqued to a 0.8-μm NMOS driver by Mathine, D.L., Droopad, R., Maracas, G.N.

    Published in IEEE photonics technology letters (01-07-1997)
    “…An optoelectronic integrated circuit (OEIC) composed of a vertical-cavity surface-emitting laser (VCSEL) appliqued to an NMOS drive circuit was fabricated to…”
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    Journal Article
  6. 6

    Selectively oxidized GaAs MESFETs transferred to a Si substrate by Wheeler, C.B., Mathine, D.L., Johnson, S.R., Maracas, G.N., Allee, D.R.

    Published in IEEE electron device letters (01-04-1997)
    “…A novel method to electrically isolate grafted integrated GaAs devices from a conductive host substrate is demonstrated. An array of GaAs MESFETs is fabricated…”
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    Journal Article
  7. 7

    Monolithic integration of a GaAs MESFET with a resonant cavity LED using a buried oxide layer by Wheeler, C., Daryanani, S., Mathine, D.L., Maracas, G.N., Allee, D.R.

    Published in IEEE photonics technology letters (01-02-1997)
    “…A new method to monolithically integrate a GaAs MESFET and a resonant cavity InGaAs QW LED is demonstrated. Current confinement in these two dissimilar devices…”
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    Journal Article
  8. 8

    A computational Fourier series solution of the BenDaniel-Duke Hamiltonian for arbitrary shaped quantum wells by Mathine, D.L., Krishnan Myjak, S., Maracas, G.N.

    Published in IEEE journal of quantum electronics (01-07-1995)
    “…A new technique for solving the BenDaniel-Duke Hamiltonian using a Fourier series method is discussed. This method Fourier transforms the effective mass and…”
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    Journal Article
  9. 9

    Electroreflectance characterization of three InGaAs quantum wells placed in a GaAs/GaAlAs resonant cavity: contactless and contact modes by Moneger, S., Pollak, F.H., Mathine, D.L., Droopad, R., Maracas, G.N.

    Published in Proceedings of LEOS'94 (1994)
    “…Electroreflectance (contactless and with contacts) has been used to characterize an InGaAs vertical-cavity surface-emitting laser at 300 K. The 1020 nm lasing…”
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    Conference Proceeding
  10. 10

    InGaAs quantum well vertical-cavity surface-emitting lasers integration onto silicon substrates by Mathine, D.L., Fathollahnejad, H., Droopad, R., Daryanani, S., Maracas, G.N.

    Published in Proceedings of LEOS'94 (1994)
    “…Vertical-cavity surface-emitting lasers have been integrated onto silicon substrates using a new substrate removal process and low temperature PdGe contacts. A…”
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    Conference Proceeding
  11. 11

    Indium tin oxide electrodes for cell-based biosensors by Mathine, D.L., Fang, D.Z., O'Connell, D.J., Bahl, J., Scholz, M., Runyan, R.B.

    “…Cell-based biosensors provide a means to detect physiological responses in cells. The electrode-to-cell interface is a critical factor in monitoring these…”
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    Conference Proceeding
  12. 12

    Organic LEDs heterogeneously integrated with CMOS circuitry by Mathine, D.L., Woo, H.S., He, W., Kim, T.W., Kippelen, B., Peyghambarian, N.

    “…The organic LEDs integrated with the CMOS circuitry were measured by driving the input to the modified current mirror. Likewise, a large area photodetector was…”
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    Conference Proceeding
  13. 13
  14. 14

    The integration of GaAs vertical-cavity surface emitting lasers onto silicon circuitry by Fathollahnejad, H., Daryanani, S., Mathine, D.L., Chuang, C.P., Droopad, R., Maracas, G.N.

    “…An InGaAs-AlGaAs vertical cavity surface emitting laser has been integrated following substrate removal onto a CMOS inverter chip. Digital modulation of the…”
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    Conference Proceeding