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Ditemukan 230 dokumen yang sesuai dengan query
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Convissar, Robert A
St. Louis: Missouri : Mosby, 2016
617.605 CON p
Buku Teks SO  Universitas Indonesia Library
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Bilal Hazim Karimdi
"Sejauh ini, pendeteksian objek di dalam air dilakukan dengan teknologi sonar yang memanfaatkan gelombang suara. Namun keterbatasan kecepatan rambat suara di dalam air menjadi penghambat perkembangan sistem deteksi di bawah air. Disisi lain cahaya dapat merambat lebih cepat di dalam air, selain itu laser memiliki sifat monokromatis dan koheren sehingga laser dapat mendeteksi objek dengan jarak yang cukup jauh dan dengan akurasi tinggi. Pada Skripsi ini dilakukan eksperimen untuk mengamati karakterisasi propagasi cahaya laser dengan λ = 532 nm sebagai dasar untuk mendeteksi objek di dalam air. Eksperimen dilakukan di berbagai tingkat salinitas air, untuk mewakili berbagai jenis air di alam. Selanjutnya dilakukan eksperimen dengan membuat jaring-jaring laser serta rangkaian pendeteksi sebagai sistem pendeteksi objek asing di dalam air dengan  memanfaatkan sensor fotodioda dan ESP32. Dari hasil eksperimen didapat nilai untuk absorptivitas berkas laser semikonduktor λ = 532 nm pada air garam dengan tingkat salinitas 35 ppt adalah sebesar 0,00415 L.

So far, underwater object detection has been carried out using sonar technology that utilizes sound waves. However, the limited speed of sound propagation in the water is an obstacle for the development of underwater detection systems. On the other side, light can travel faster in water. In addition, the laser has monochromatic and coherent properties so that the laser can detect objects at a considerable distance and with high accuracy. In this thesis, an experiment was carried out to observe the characterization of laser light propagation with λ = 532 nm as the basis for detecting objects underwater. Experiments were carried out at various levels of water salinity, to represent the different types of water in nature. Furthermore, experiments were carried out by making laser nets and detection circuits as a system for detecting foreign objects underwater by utilizing photodiode sensors and ESP32. Based on the experimental results, it was found that the absorptivity of the semiconductor laser beam λ = 532 nm in salt water with a salinity level of 35 ppt was 0.00415 L."
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Harry Huiz Peeters
"Buku Basic Laser Dentistry merupakan sebuah buku tentang laser dalam bidang kedokteran gigi. Di dalam buku ini dibahas mengenai dasar-dasar ilmu laser secara umum, laser delivery systems, bagimana interaksi antara sinar laser dengan jaringan. Buku ini juga dapat menjadi bahan tutorial bagi dokter gigi, mahasiswa FKG, dosen, dll. yang memiliki minat untuk menambah pengetahuan. rnrnSebenarnya buku ini tidak dimaksudkan untuk menggantikan clinical course, yang dikhususkan untuk mendidik seorang dokter gigi agar dapat menggunakan laser di klinik secara tepat. Buku ini juga menerangkan bagian-bagian jenis laser, macam-macam aplikasi klinis serta clinical tips."
Jakarta: Sagung Seto, 2019
617.6 HAR b
Buku Teks  Universitas Indonesia Library
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Nur Sultan Salahuddin
"ABSTRAK
Laser eksimer komersial telah berhasil dikonversikan menjadi Laser Nitrogen dengan menggunakan campuran gas helium dan gas nitrogen masing-masing pada tekanan parsial 1310 mbar dan 40 mbar. Laser nitrogen tersebut telah berhasil dioperasikan pada frekuensi repetisi 100 Hz dengan energi keluaran 5 mJ tiap pulsa dengan fluktuasi energi lebih kecil dari 0.8 %. Stabilitas energi keluaran yang tinggi pada frekuensi repetisi 100 Hz ini, dicapai melalui pemakaian kipas berkecepatan tinggi untuk menjaga agar campuran gas dan aliran gas pada elektroda utama menjadi lebih homogen. Emisi spektral yang diperoleh dari plasma yang dibangkitkan oleh sistem laser nitrogen dibandingkan dengan yang diperoleh menggunakan laser Nd-YAG pada energi keluaran yang sama. Hasil memperlihatkan ketelitian data dengan standar deviasi 1.4 % untuk kasus laser nitrogen, lebih baik dibandingkan dengan standar deviasi yang dicapai oleh laser Nd-YAG yaitu 14.3 %. Selanjutnya data eksperimen memperlihatkan keunggulan dari laser nitrogen untuk peningkatan rasio signal terhadap latar belakang dan pengurangan pada efek penguapan selektif.

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2000
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Marpaung, Mangasi Alion
"A comprehensive study has been made on the dynamical process-taking place in the laser-plasma generation induced by a TEA CO2 laser bombardment on metal target and non-metal target from low to high pressures surrounding gas. In the case of metal target, pure zinc plate was used as a target and bombarded with 400-mJ-laser pulse energy. Dynamical characterization of plasma expansion and excitation were examined in detail both for target atomic emission (Zn I 481.0 nm) and gas atomic emission (He 1 587.6 nm) by using a unique time-resolved spatial distribution measurement and conventional emission spectroscopic detection method. The results showed that the plasma expands and develops with time. The mechanism of plasma generation can be classified into three cases depending on .the surrounding gas pressures; target shock wave plasma in the pressure range between 2 Ton and 20 Ton, coupling shock wave plasma in the pressure range between 50 Torr and 200 Torr and gas break down shock wave plasma in the pressure range between 200 Ton and I atm. In all cases in the laser-plasma generation under TEA CO2 laser bombardment on metal target, shock wave process always plays important role for exciting the target atoms and gas molecules.
In the case of non-metal target, a museum glass was used as a target and bombarded with a 400 nd laser pulse energy. By using the conventional emission spectroscopic detection method, namely temporally and spatially integrated and time-resolved spatially integrated of plasma emission, it was shown that the plasma mainly consists of target atomic emission. Only weak gas atomic emission intensity could be observed even at I atm of surrounding gas pressure. These results indicate that the gas breakdown is not a major process responsible to the plasma formation even at high pressure surrounding gas. Shock wave process was considered as an important role in this plasma formation. By the use of shadowgraph technique to detect the density jump signal due to the shock wave front involving a He-Ne laser as a probe light, simultaneous detection of the shock wave front and the emission front was successfully implemented. The result showed that at the initial stages of plasma expansion shock wave front and emission front coincide and move together with time. At the later stages of plasma expansion the two fronts became separate with the emission front left behind the shock wave front. These results are completely coinciding with the shock wave plasma model. Unfortunately, in this experiment we succeed to detect the density jump signal only for high pressure surrounding gas, above 100 Torr. At the pressures lower than 100 Torr the density jump signal was very weak and it is difficult to distinguish with the noise including in the signal.
The other important experimental results that support the shock wave plasma model were also obtained in this experiment, namely the coincidence of emission front regardless of their atomic weight and sub-target effect. By using lead glass as a sample, which contain Pb, Si, and Ca, it was confirmed that the emission front of the Pb I 450.8 nm, Si 1288.2 nm and Ca I 422.6 nm almost coincide regardless of their atomic weight. This result also supports the shock wave plasma model because, by the stagnation of the propelling atoms, the front position of the all atoms coincides regardless of its mass. In the case of sub-target effect, confirm that plasma could be produced even for soft target if sub-target is set behind the sample. In this case we use a quartz sample as a sub-target and a vinyl tape was attached to the quartz sample as a target. The TEA CO2 laser bombardment was used at 150 ml and at 1 atm of air. The main role of the subtarget is to produce a repulsion force for atom gushing with high speed. For shock wave, high speed is necessary condition to compress the gas.
Coincidence of the movement of the shock wave front and the emission front in the initial stages of plasma expansion is a direct proof of the shock wave plasma model. By improving the detection technique of the density jump associated with the shock wave, the correlation between the shock wave front and the emission front was examined in detail. For this purpose rainbow interferometer system, which has higher sensitivity compared with the shadowgraph technique, was used to detect the density jump signal. We succeed to realize simultaneous detection of shock wave front and emission front from 3 Ton until 1 atm of air when a quartz sample is bombarded with a 600 nil TEA C02 laser. In all pressure that were examined, the shock wave front and the emission front always coincide and move together with time in the initial stages and separate at the later stages with emission front left behind the shock wave front. The coincidence of the shock wave front and emission front and move together with time at the initial stages of plasma expansion was also obtained by using ruby as a sample at 10 Torr and 100 Ton of air as well as with museum glass at the same laser pulse energy.
Another important experimental result obtained in this experiment is that confirmation of the coincidence of the target atomic emission front and gas atomic emission front and density jump. This confirmation was obtained by examined a Quartz sample in 50 Ton of helium and a zinc sample in 100 Ton of helium. This result strongly supports the shock wave plasma model because, in ordinary shock tube experiment, gas emission takes place just behind the shock wave.
From a practical point of view of direct microanalysis for spectrochemicaI application of alloy metal samples such as brass, selective vaporization effect was also studied. The results showed that even for Nd-YAG laser with short pulse duration (8 ns) and high power density (30 GWcm 2), selective vaporization take place to a certain extend. It was demonstrated in this experiment that selective vaporization is enhanced if the laser irradiation was repeated on the same spot of sample surface. Meanwhile it was also shown in this experiment that the effect of selective vaporization could be significantly suppressed by increasing the surrounding gas pressure from 2 Toff to around 50 Torr of air."
Depok: Fakultas Teknik Universitas Indonesia, 2000
D234
UI - Disertasi Membership  Universitas Indonesia Library
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Kurnia Lahna
"A special interferometric technique with high sensitivity has been devised on the basis of rainbows refractometer without the use of an additional and delicate amplitude-splitting setup. This new technique was use for the characterization of shock wave plasma induced by a Q-sw Nd-YAG laser on various kinds of metal samples under reduced gas pressures. An unmistakable signal of density jump was detected simultaneously with the emission front signal. It is proved that at the initial stage of the secondary plasma expansion, the front of the emission and the front of the blast wave was coincide and move together with time. However, at a later stage, the front of the emission will separate from that of the blast wave induced in the surrounding gas at low pressures. Using Cu and Zn samples, the experimental result showed that the separation of the emission front and blast wave front took place at 4 mm above sample surface for the laser energy of 140 mJ."
2000
T4004
UI - Tesis Membership  Universitas Indonesia Library
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Ilaria Giovannacci
"ABSTRACT
Medication-Related Osteonecrosis of the Jaw (MRONJ) therapy remains an unresolved problem. The proposed conservative and surgical treatment regimens are associated to contradictory success rates. Surgical approach with Er:YAG laser is associated to significant better results compared to medical treatment and traditional surgical approaches. Objective: To describe a new surgical approach that couples the advantages of the Er:YAG laser and the usefulness of the AF in highlighting surgical margins. One of the difficulties encountered during surgical removal of a MRONJ is the precise individuation of necrotic bone margins. Case Report: A case of Stage III mandibular
osteonecrosis treated with a new surgical approach is presented. The aim is to describe an auto-fluorescence (AF) guided surgical approach performed with Er:YAG laser and Nd:YAG Low Level Laser Therapy (LLLT). After one month of follow-up, the complete mucosal healing was evident and symptoms was unobserved. Such a technique allowed a highly accurate and minimally invasive approach through the selective ablation of the non-/hypofluorescent areas. Conclusion: Taking into account the advantages of laser therapy and the possible effectiveness
of the AF in highlighting surgical margins, this approach would probably achieve excellent outcomes."
Department of Biomedical, Biotechnological and Translational Sciences?Center of Oral Pathology and Laser Surgery, University of Parma, 2015
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Artikel Jurnal  Universitas Indonesia Library
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Nayaka Arya Nayottama
"Urgensitas dari ketersediaan oksigen yang menjadi penyokong kehidupan manusia saat manusia mengalami penyakit pernapasan akut seperti COVID-19 menjadi alasan dibuatnya konsentrator oksigen. Konsentrator yang ada pada pasaran tidak memberikan informasi terkait laju aliran dan konsentrasi oksigen yang dihasilkan oleh sistem konsentrator oksigen. Penelitian ini berhasil merancang rangkaian sistem pengendalian katup dan sensor konsentrasi oksigen dengan keseluruhan sistem konsentrator oksigen yang memiliki ukuran ringkas namun tetap memiliki performa yang baik. Laju aliran target yang ditentukan penulis dapat dicapai dalam waktu 30 detik dengan akurasi pembacaan sensor yang memiliki selisih pembacaan 0% hingga 2%. Sistem konsentrator oksigen yang sudah dirancang mampu mencapai konsentrasi oksigen 94% saat laju aliran 1 LPM, 91% saat laju aliran 1,5 LPM; dan 88% saat laju aliran 2 LPM, dan telah berhasil dirancang juga sistem pembacaan hasil keluaran sistem konsentrator oksigen dengan sensor dan ditampilkan pada layar yang terdapat pada rangkaian.

The urgency of the availability of oxygen which supports human life when humans experience acute respiratory illnesses such as COVID-19 is the reason for the creation of oxygen concentrators. Oxygen concentrators on the market do not provide information regarding the flow rate and oxygen concentration produced by the oxygen concentrator system. This research successfully designed a series of valve control systems and oxygen concentration sensors with an overall oxygen concentrator system that is compact but still performs well. The target flow rate determined by the author can be achieved within 30 seconds with sensor reading accuracy that has a reading difference of 0% to 2%. The system oxygen concentrator system that has been designed can achieve an oxygen concentration of 94% at a flow rate of 1 L/M, 91% at a flow rate of 1,5 LPM, and 88% at a flow rate of 2 LPM. The system has also been successfully designed to read the output results of the oxygen concentrator system with sensors and display them on the screen in the circuit.
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Depok: Fakultas Teknik Universitas Indonesia, 2023
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UI - Skripsi Membership  Universitas Indonesia Library
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Agus Santoso Tamsir
"ABSTRACT
Recently, the Indonesian researchers have anticipated the research on photonic devices especially on semiconductor laser. According to the anticipation above, the scope of this research is on photonic devices particularly on design and performance fabrication of 1.55 um GaInAsPfInP semiconductor laser using intrinsic single-mode layers.
The semiconductor laser was designed using intrinsic single-mode layers that consist of 4 (four) layers i.e., 2 (two) waveguiding layers with 1,15 p.m, AMB (Anti Melt Back) layer with 1.3 pm, and active layer with 1.55 pm. The layers were growth by designing 0.17 pm waveguiding layer thickness, 0.1 pm active layer- and AMB layer thickness, respectively. The performance optimizing were on optical confinement factor of the single-mode layers and threshold current.
The design and simulation results that threshold current of 702,5 mA and the optical confinement factor of 0.801 can be achieved. In addition, the optimum performance was obtained with thicker AMB layer, thicker active layer, and thinner wave-guiding layers.

ABSTRAK
Para peneliti di Indonesia hingga saat ini telah mengantisipasi penelitian di bidang devais fotonik terutama diode laser semikonduktor. Penelitian pada tesis ini di bidang devais fotonik diutamakan pada rancang bangun dan simulasi unjuk kerja dari diode laser semikonduktor pada panjang gelombang 1,55 um dengan bahan GalnAs-PIInP menggunakan lapisan mode tunggal intrinsik.
Pada rancang bangun dirancang suatu diode laser semikonduktor dengan lapisan mode tunggal yang terdiri dari empat buah lapisan GaInAsP masing-masing 2 buah lapisan pandu gelombang dengan panjang gelombang 1,15 µm, lapisan aktif dengan 1,55 gm, dan lapisan anti cair ulang (ACU) dengan 1.3 µm. Untuk penumbuhan dipilih lapisan pandu gelombang setebal 0,17 gm, lapisan aktif setebal 0,1 gm dan lapisan ACU setebal 0,1 gm. Dalam perancangan, parameter faktor perangkap cahaya dari lapisan mode tunggal dan besamya arus ambang memegang peranan penting untuk mengoptimalkan unjuk kerja.
Hasil rancang bangun dan simulasi memperlihatkan bahwa unjuk kerja perhitungan dengan arus ambang sebesar 702,5 mA dan faktor perangkap cahaya lapisan mode tunggal sebesar 0,801 dapat dicapai. Selain itu optimalisasi unjuk kerja dapat diperoleh dengan cara mempertebal lapisan ACU, membuat lapisan aktif tidak tipis dan lapisan pandu gelombang tidak tebal."
Depok: Fakultas Teknik Universitas Indonesia, 1996
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Herwandi
"Penggunaan laser untuk berbagai macam aplikasi dewasa ini sudah banyak digunakan oleh masyarakat. Oleh karena itu, untuk mendapatkan hasil lebih baik dalam pengembangan mesin alat pemotong dan sintering pada bahan polymer menggunakan laser diode berdaya rendah, perlu dilakukan analisis system pemotongan dan sinteringnya, baik secara simulasi maupun eksperimen. Bahan polymer yang digunakan adalah acrylic. Untuk simulasi proses pemotongan menggunakan program matlab, sedangkan untuk eksperimen digunakan mesin CNC frais sebagai pergerakan.
Dari penelitian ternyata parameter seperti kecepatan, pass, lintasan dan hembusan udara berpengaruh terhadap kedalaman pemotongan pada proses pemotongan, sedangkan ketebalan produk pada hasil proses sintering dipengaruhi parameter seperti kecepatan, tegangan dan arus listrik laser diode dan layer.

Nowadays the use of laser to various kinds of applications has been applied. Therefore, to obtain better results in the development of a cutting and sintering machine of polymer materials using low power laser, cutting system and sintering should be analyzed, both in simulation and experiment. The polymer materials used in this experiment are acrylic. For the simulation of cutting process, matlab program is used while the experimental process used CNC milling machine as a manipulator.
From the research it is shown that parameters such as speed, pass, path and airflow affect the depth of cutting in the process of cutting, while the thickness of the product on the results of the process of sintering have been influenced by parameters such as speed, voltage and electrical current laser diode and layer.
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Depok: Fakultas Teknik Universitas Indonesia, 2011
T29825
UI - Tesis Open  Universitas Indonesia Library
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