Search Results - "Sickler, J.W."

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  1. 1

    High repetition rate, high average power, femtosecond erbium fiber ring laser by Morse, J.L., Sickler, J.W., Chen, J., Kartner, F.X., Ippen, E.P.

    “…A 301 MHz fundamentally mode-locked erbium fiber ring laser generating 108 fs pulses is demonstrated. Novel combination of gain fiber with anomalous…”
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    Conference Proceeding
  2. 2

    High Repetition Rate, Low Jitter, Fundamentally Mode-locked Soliton Er-fiber Laser by Chen, J., Sickler, J.W., Ippen, E.P., Kartner, F.X.

    “…Generation of low jitter 167 fs pulses at a fundamental repetition rate of 194 MHz from a passively mode-locked soliton Er-fiber laser via nonlinear…”
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    Conference Proceeding
  3. 3

    Generation of High Repetition Rate Femtosecond Pulse Trains with a High Finesse External Fabry-Perot Cavity by Chen, J., Sickler, J.W., Wilken, T., Fendel, P., Holzwarth, R., Hansch, T.W., Ippen, E.P., Kartner, F.X.

    “…Generation of 130-fs pulse trains at 1560 nm with 1 GHz repetition rate is demonstrated by locking a fundamentally mode-locked 200 MHz repetition rate fiber…”
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    Conference Proceeding
  4. 4

    Low timing-jitter high repetition-rate femtosecond pulse trains via locking to external Fabry-Perot cavities by Chen, J., Sickler, J.W., Ippen, E.P., Kartner, F.X.

    “…Generation of low timing-jitter 150-fs pulse trains at 1560 nm with 2 GHz repetition rate is demonstrated by locking a fundamentally mode-locked 200 MHz fiber…”
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    Conference Proceeding
  5. 5

    Femtosecond laser using broadband erbium-doped bismuth oxide gain fiber by Sickler, J.W., Gopinath, J.T., Tandon, S.N., Sotobayashi, H., Petrich, G.S., Kolodziejski, L.A., Ippen, E.P.

    “…A stable, femtosecond laser incorporating erbium-doped bismuth oxide fiber for high gain and broad bandwidth and an ultra-broadband oxidized saturable Bragg…”
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    Conference Proceeding