• 제목/요약/키워드: Thermal Wave

검색결과 539건 처리시간 0.028초

Mechanical and thermodynamic stability, structural, electronics and magnetic properties of new ternary thorium-phosphide silicides ThSixP1-x: First-principles investigation and prospects for clean nuclear energy applications

  • Siddique, Muhammad;Iqbal, Azmat;Rahman, Amin Ur;Azam, Sikander;Zada, Zeshan;Talat, Nazia
    • Nuclear Engineering and Technology
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    • 제53권2호
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    • pp.592-602
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    • 2021
  • Thorium compounds have attracted immense scientific and technological attention with regard to both fundamental and practical implications, owing to unique chemical and physical properties like high melting point, high density and thermal conductivity. Hereby, we investigate the mechanical and thermodynamic stability and report on the structural, electronic and magnetic properties of new silicon-doped cubic ternary thorium phosphides ThSixP1-x (x = 0, 0.25, 0.5, 0.75 and 1). The first-principles density functional theory procedure was adopted within full-potential linearized augmented plane wave (FP-LAPW) method. The exchange and correlation potential terms were treated within Generalized-Gradient-Approximation functional modified by Perdew-Burke-Ernzerrhof parameterizations. The proposed compounds showed mechanical and thermodynamic stable structure and hence can be synthesized experimentally. The calculated lattice parameters, bulk modulus, total energy, density of states, electronic band structure and spin magnetic moments of the compounds revealed considerable correlation to the Si substitution for P and the relative Si/P doping concentration. The electronic and magnetic properties of the doped compounds rendered them non-magnetic but metallic in nature. The main orbital contribution to the Fermi level arises from the hybridization of Th(6d+5f) and (Si+P)3p states. Reported results may have potential implications with regard to both fundamental point of view and technological prospects such as fuel materials for clean nuclear energy.

A first-principles theoretical investigation of the structural, electronic and magnetic properties of cubic thorium carbonitrides ThCxN(1-x)

  • Siddique, Muhammad;Rahman, Amin Ur;Iqbal, Azmat;Azam, Sikander
    • Nuclear Engineering and Technology
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    • 제51권5호
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    • pp.1373-1380
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    • 2019
  • Besides promising implications as fertile nuclear materials, thorium carbonitrides are of great interest owing to their peculiar physical and chemical properties, such as high density, high melting point, good thermal conductivity. This paper reports first-principles simulation results on the structural, electronic and magnetic properties of cubic thorium carbonitrides $ThC_xN_{(1-x)}$ (X = 0.03125, 0.0625, 0.09375, 0.125, 0.15625) employing formalism of density-functional-theory. For the simulation of physical properties, we incorporated full-potential linearized augmented plane-wave (FPLAPW) method while the exchange-correlation potential terms in Kohn-Sham Equation (KSE) are treated within Generalized-Gradient-Approximation (GGA) in conjunction with Perdew-Bruke-Ernzerhof (PBE) correction. The structural parameters were calculated by fitting total energy into the Murnaghan's equation of state. The lattice constants, bulk moduli, total energy, electronic band structure and spin magnetic moments of the compounds show dependence on the C/N concentration ratio. The electronic and magnetic properties have revealed non-magnetic but metallic character of the compounds. The main contribution to density of states at the Fermi level stems from the comparable spectral intensity of Th (6d+5f) and (C+N) 2p states. In comparison with spin magnetic moments of ThSb and ThBi calculated earlier with LDA+U approach, we observed an enhancement in the spin magnetic moments after carbon-doping into ThN monopnictide.

근미래 친환경 건축분야 엔지니어에게 필요한 역량에 대한 델파이 연구 (A Delphi Study on Competencies of Future Green Architectural Engineer)

  • 강소연;김태연;이정우
    • 공학교육연구
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    • 제21권3호
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    • pp.56-65
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    • 2018
  • With rapid advance of technologies including information and communication technologies, jobs are evolving faster than ever. Architectural engineering is no exception in this regard, and the green architectural engineering is emerging fast as a promising new field. In this study, a Delphi study of expert architectural engineers are conducted to find out (1) near future prospects of the field, (2) near future emerging jobs, (3) competencies needed for these jobs, and (4) educational content necessary to build these competencies with regards to the green architectural engineering. Initial Delphi survey consisting of open-ended questions in the above four areas were conducted and came out with 65 items after duplicate removal and semantic refinements. Further refinements via second and third wave of Delphi results into 40 items that the 13 architectural engineering experts may largely agree upon as future prospects with regards to the green architectural engineering. Findings indicate that it is expected that the demand for green architectural engineering and needs for automatic energy control system increase. Also, collaborations with other fields is becoming more and more important in green architectural engineering. The professional work management skills such as knowledge convergence, problem solving, collaboration skills, and creativity linking components from various related areas seem to also be on the increasing need. Near future ready critical skills are found to be the building environment control techniques (thermal, light, sound, and air), the data processing techniques like data mining, energy monitoring, and the control and utilization of environmental analysis software. Experts also agree on new curriculum for green building architecture to be developed with more of converging subjects across disciplines for future ready professional skills and experiences. Major topics to be covered in the near future includes building environment studies, building energy management, energy reduction systems, indoor air quality, global environment and natural phenomena, and machinery and electrical facility. Architectural engineering community should be concerned with building up the competencies identified in this Delphi preparing for fast advancing future.

The Error of the Method of Angular Sections of Microwave Sounding of Natural Environments in the System of Geoecological Monitoring

  • Fedoseeva, E.V.;Kuzichkin, O. R.
    • International Journal of Computer Science & Network Security
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    • 제21권6호
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    • pp.47-53
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    • 2021
  • The article deals with the problems of application of microwave methods in systems of geoecological monitoring of natural environments and resources of the agro-industrial complex. It is noted that the methods of microwave radiometry make it possible, by the power of the measured intrinsic radio-thermal radiation of the atmosphere, when solving inverse problems using empirical and semi-empirical models, to determine such parameters of the atmosphere as thermodynamic temperature, humidity, water content, moisture content, precipitation intensity, and the presence of different fractions of clouds.In addition to assessing the meteorological parameters of the atmosphere and the geophysical parameters of the underlying surface based on the data of microwave radiometric measurements, it is possible to promptly detect and study pollution of both the atmosphere and the earth's surface. A technique has been developed for the analysis of sources of measurement error and their numerical evaluation, because they have a significant effect on the accuracy of solving inverse problems of reconstructing the values of the physical parameters of the probed media.To analyze the degree of influence of the limited spatial selectivity of the antenna of the microwave radiometric system on the measurement error, we calculated the relative measurement error of the ratio of radio brightness contrasts in two angular directions. It has been determined that in the system of geoecological monitoring of natural environments, the effect of background noise is maximal with small changes in the radiobrightness temperature during angular scanning and high sensitivity of the receiving equipment.

전도성 그리드를 활용한 전자파 흡수차폐/방열 복합소재 필름 (A Conductive-grid based EMI Shielding Composite Film with a High Heat Dissipation Characteristic)

  • 박병진;류승한;권숙진;김수련;이상복
    • Composites Research
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    • 제35권3호
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    • pp.175-181
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    • 2022
  • 무선통신기술의 발전과 함께 통신기기의 활용영역은 기하급수적으로 증가하고 있으며, 이에 따라 통신기기 성능의 저하를 막기 위한 전자파 노이즈 간섭문제 해결 및 방열문제 해결 소재에 대한 관심이 높아지고 있다. 본 연구에서는 전자파 차폐와 우수한 방열특성을 동시에 가질 수 있는 복합소재 필름을 제안하였다. 이 필름은 고분자 수지에 자성 및 방열 필러 물질이 분산된 복합소재 레이어와 전도성 그리드로 구성되어 있다. 복합소재 레이어의 조성 및 특성에 대한 제어 및 전도성 그리드 형상에 대한 설계를 통해 높은 전자파 차폐능(>40 dB), 낮은 전자파 반사능(<3 dB), 우수한 열전도도(>10 W/m·K)를 5G 통신 대역인 26.5 GHz에서 500 ㎛ 이하의 극박 필름으로 달성하는 데 성공하였다.

압력배출구를 설치한 전동화 차량 배터리 시험실의 내부 폭압 평가 (Evaluation of Internal Blast Overpressures in Test Rooms of Elcetric Vehicles Battery with Pressure Relief Vents)

  • 방승기;신진원;정현진
    • 한국지열·수열에너지학회논문집
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    • 제18권3호
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    • pp.7-18
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    • 2022
  • Secondary batteries used in electric vehicles have a potential risk of ignition and explosion. Various safety measures are being taken to prevent these risks. A numerical study was performed using a computational fluid dynamics code on the cases where pressure relief vents that can reduce the blast overpressures of batteries were installed in the through-compression test room, short-circuit drop test room, combustion test room, and immersion test room in facilities rleated to battery used in electric vehicles. This study was conducted using the weight of TNT equivalent to the energy release from the battery, where the the thermal runaway energy was set to 324,000 kJ for the capacity of the lithium-ion battery was 90 kWh and the state of charge (SOC) of the battery of 100%. The explosion energy of TNT (△HTNT) generally has a range of 4,437 to 4,765 kJ/kg, and a value of 4,500 kJ/kg was thus used in this study. The dimensionless explosion efficiency coefficient was defined as 15% assuming the most unfavorable condition, and the TNT equivalent mass was calculated to be 11 kg. The internal explosion generated in a test room shows the very complex propagation behavior of blast waves. The shock wave generated after the explosion creates reflected shock waves on all inner surfaces. If the internally reflected shock waves are not effectively released to the outside, the overpressures inside are increased or maintained due to the continuous reflection and superposition from the inside for a long time. Blast simulations for internal explosion targeting four test rooms with pressure relief vents installed were herein conducted. It was found that that the maximum blast overpressure of 34.69 bar occurred on the rear wall of the immersion test room, and the smallest blast overpressure was calculated to be 3.58 bar on the side wall of the short-circuit drop test room.

폭염 시 어린이공원의 온열환경 (Thermal Environments of Children's Parks during Heat Wave Period)

  • 류남형;이춘석
    • 한국조경학회지
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    • 제44권6호
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    • pp.84-97
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    • 2016
  • 본 연구는 폭염 시 어린이공원 내 포장 및 차양의 유형에 따른 온열환경을 규명하고자 하였다. 이를 위해 진주기상대에서 측정한 일 최고기온이 $35.9{\sim}36.8^{\circ}C$를 나타낸 2016년 8월 11일부터 8월 13일까지 3일간 진주시내 어린이공원 2곳(칠암어린이공원: $N\;35^{\circ}11^{\prime}1.4{^{\prime}^{\prim}}$, $E\;128^{\circ}531.7{^{\prime}^{\prime}}$, 표고: 38m; 가호제12어린이공원: $N\;35^{\circ}09^{\prime}56.8{^{\prime}^{\prime}}$, $E\;128^{\circ}6^{\prime}41.1{^{\prime}^{\prime}}$, 표고: 24m)의 모래밭, 고무칩포장지, 쉘터, 녹음지를 대상으로 미기상을 측정하였다. 미기상환경으로서 지상 60cm 높이에서 기온, 흑구온도, 상대습도, 풍속, 6방향의 장파 및 단파 복사를 측정하였고, 이를 바탕으로 열스트레스 지수인 WBGT와 UTCI를 산정 및 분석하였다. 또한 열화상카메라로 포장면과 놀이시설의 표면온도를 측정하였으며, 이를 바탕으로 단시간 피부접촉시 화상의 위험을 평가하였다. 연구결과는 다음과 같다. 어린이공원의 3일 시간 평균 최고 기온은 $36.6{\sim}39.4^{\circ}C$였으며, 모래밭에 비해 녹음에서 $2.8^{\circ}C$, 쉘터에서 $1.0^{\circ}C$$2.3^{\circ}C$ 낮게 나타났다. 시간 평균 최저 습도는 44~50%였으며, 모래밭이나 고무칩포장지에 비해 녹음에서 6%, 쉘터에서 4% 및 6% 높게 나타났다. 열사병위험지수 WBGT 값에 근거하면 폭염 시 어린이공원의 주간의 열사병 위험도는 높은 또는 극심한 정도로 나타났다. 3일 30분 평균 최고 WBGT 값은 $31.2{\sim}33.6^{\circ}C$였으며, 모래밭에 비해 녹음에서 $2.8^{\circ}C$, 쉘터에서 $2.3^{\circ}C$$1.0^{\circ}C$ 낮게 나타났으나, 차양에 의해서도 열사병 위험을 피할 수는 없었다. 체감더위지수 UTCI 값에 근거하면 폭염 시 어린이공원의 주간의 온열 스트레스의 범주는 매우 강한 또는 극심한 정도로 나타났다. 3일 30분 평균 최고 UTCI 값은 $39.9{\sim}48.1^{\circ}C$였으며, 모래밭에 비해 녹음에서 $7.8^{\circ}C$, 쉘터에서 $8.2^{\circ}C$$4.1^{\circ}C$ 낮게 나타났으나, 차양에 의해서도 극심한 또는 매우 강한 온열 스트레스를 강한 또는 적정한 온열 스트레스로 낮출 수는 없었다. 단시간 피부접촉에 의한 화상 온도 기준에 따르면, 놀이시설 및 포장면의 최고 표면온도가 스텐레스 스틸($70.8^{\circ}C$)은 무도장 철재 3초 $60^{\circ}C$, 고무칩포장($76.5^{\circ}C$)은 플라스틱 5초 $74^{\circ}C$, 청색 플라스틱 미끄럼판($68.5^{\circ}C$)과 앉음판($71.0^{\circ}C$)은 플라스틱 1분 $60^{\circ}C$ 기준을 초과한 것으로 나타났다. 하지만 그늘이 진 놀이시설의 표면온도는 햇빛에 노출된 놀이시설의 표면온도에 비해 $20^{\circ}C$ 내외로 낮게 나타나, 차양에 의해 화상의 위험을 현저하게 개선할 수 있을 것으로 판단된다. 폭염 시에는 어린이공원의 온열환경은 어린이들에게 높거나 극심한 열사병 위험에 빠지게 하고, 매우 강한 또는 극심한 온열 스트레스를 주기 때문에 보호자나 관리자가 어린이들의 어린이공원 이용을 제한해야 한다. 그리고 폭염시에는 어린이공원의 포장면 또는 놀이시설에 의한 화상의 위험이 매우 높으므로 이용 시 주의를 해야 하며, 화상의 예방을 위해서는 차양시설을 적극적으로 도입해야 한다.

돼지에서 연속형 $CO_2$ 레이저와 펄스형 $CO_2$ 레이저를 이용한 피부절개시 창상치유 평가 (Comparison of Wound Healing in Porcine Skin with Continuous-Wave and Pulsed Mode $CO_2$ Laser Incisions)

  • 이재연;조성환;박창식;김명철
    • 한국임상수의학회지
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    • 제27권6호
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    • pp.647-651
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    • 2010
  • 연속형 $CO_2$ 레이저와 펄스형 $CO_2$ 레이저를 이용한 돼지 피부절개 시 창상 치유에 미치는 영향을 평가하고자 본 실험을 실시하였다. 다섯 마리의 돼지(Landrace x Yorkshire) (45-51 kg, 4-6 개월령, 수컷 3마리, 암컷 2마리)를 이용 하였고, 각각의 돼지에서 우측 및 좌측의 등쪽 피부에 대칭적으로 연속형 $CO_2$ 레이저와 펄스형 $CO_2$ 레이저를 이용하여 절개($2{\times}2{\times}2cm^2$) 하였다. 양측 피부 절개는 Maxon 3-0 를 이용하여 봉합하였다. 수술 후 3, 7, 14, 21일에 병리조직학적 검사를 실시하였다. 창상 부위의 재상피화는 연속형 $CO_2$ 레이저 군에 비해 펄스형 $CO_2$ 레이저군에서 더 많이 이루어졌다. 육아조직 형성은 창상후 경과일 3일에 펄스 $CO_2$ 레이저군에서 유의적으로 높게 나타났다(P < 0.05). 섬유아세포는 창상후 경과일 7일에 펄스형 $CO_2$ 레이져군에서 유의적으로 많게 형성되었다(P < 0.05). 결론적으로 피부절개 시에 있어서 펄스형 $CO_2$ 레이저는 연속형 $CO_2$ 레이저에 비하여 재상피화, 육아조직형성 및 섬유아세포가 더 높게 나타났으며, 레이저 시술에 따른 조직손상을 적게 나타내었다. 따라서 피부절개 시에 있어서 펄스형$CO_2$ 레이저가 연속형 $CO_2$ 레이저 보다 더 적합할 것으로 판단된다.

Considerations of Environmental Factors Affecting the Detection of Underwater Acoustic Signals in the Continental Regions of the East Coast Sea of Korea

  • Na, Young-Nam;Kim, Young-Gyu;Kim, Young-Sun;Park, Joung-Soo;Kim, Eui-Hyung;Chae, Jin-Hyuk
    • The Journal of the Acoustical Society of Korea
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    • 제20권2E호
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    • pp.30-45
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    • 2001
  • This study considers the environmental factors affecting propagation loss and sonar performance in the continental regions of the East Coast Sea of Korea. Water mass distributions appear to change dramatically in a few weeks. Simple calculation with the case when the NKCW (North Korean Cold Water) develops shows that the difference in propagation loss may reach in the worst up to 10dB over range 5km. Another factor, an eddy, has typical dimensions of 100-200km in diameter and 150-200m in thickness. Employing a typical eddy and assuming frequency to be 100Hz, its effects on propagation loss appear to make lower the normal formation of convergence zones with which sonars are possible to detect long-range targets. The change of convergence zones may result in 10dB difference in received signals in a given depth. Thermal fronts also appear to be critical restrictions to operating sonars in shallow waters. Assuming frequency to be 200Hz, thermal fronts can make 10dB difference in propagation loss between with and without them over range 20km. An observation made in one site in the East Coast Sea of Korea reveals that internal waves may appear in near-inertial period and their spectra may exist in periods 2-17min. A simulation employing simple internal wave packets gives that they break convergence zones on the bottom, causing the performance degradation of FOM as much as 4dB in frequency 1kHz. An acoustic experiment, using fixed source and receiver at the same site, shows that the received signals fluctuate tremendously with time reaching up to 6.5dB in frequencies 1kHz or less. Ambient noises give negative effects directly on sonar performance. Measurements at some sites in the East Coast Sea of Korea suggest that the noise levels greatly fluctuate with time, for example noon and early morning, mainly due to ship traffics. The average difference in a day may reach 10dB in frequency 200Hz. Another experiment using an array of hydrophones gives that the spectrum levels of ambient noises are highly directional, their difference being as large as 10dB with vertical or horizontal angles. This fact strongly implies that we should obtain in-situ information of noise levels to estimate reasonable sonar performance. As one of non-stationary noise sources, an eel may give serious problems to sonar operation on or under the sea bottoms. Observed eel noises in a pier of water depth 14m appear to have duration time of about 0.4 seconds and frequency ranges of 0.2-2.8kHz. The 'song'of an eel increases ambient noise levels to average 2.16dB in the frequencies concerned, being large enough to degrade detection performance of the sonars on or below sediments. An experiment using hydrophones in water and sediment gives that sensitivity drops of 3-4dB are expected for the hydrophones laid in sediment at frequencies of 0.5-1.5kHz. The SNR difference between in water and in sediment, however, shows large fluctuations rather than stable patterns with the source-receiver ranges.

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IBC형 태양전지를 위한 균일하게 증착된 비정질 실리콘 층의 광섬유 레이저를 이용한 붕소 도핑 방법 (Boron Doping Method Using Fiber Laser Annealing of Uniformly Deposited Amorphous Silicon Layer for IBC Solar Cells)

  • 김성철;윤기찬;경도현;이영석;권태영;정우원;이준신
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.456-456
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    • 2009
  • Boron doping on an n-type Si wafer is requisite process for IBC (Interdigitated Back Contact) solar cells. Fiber laser annealing is one of boron doping methods. For the boron doping, uniformly coated or deposited film is highly required. Plasma enhanced chemical vapor deposition (PECVD) method provides a uniform dopant film or layer which can facilitate doping. Because amorphous silicon layer absorption range for the wavelength of fiber laser does not match well for the direct annealing. In this study, to enhance thermal affection on the existing p-a-Si:H layer, a ${\mu}c$-Si:H intrinsic layer was deposited on the p-a-Si:H layer additionally by PECVD. To improve heat transfer rate to the amorphous silicon layer, and as heating both sides and protecting boron eliminating from the amorphous silicon layer. For p-a-Si:H layer with the ratio of $SiH_4$ : $B_2H_6$ : $H_2$ = 30 : 30 : 120, at $200^{\circ}C$, 50 W, 0.2 Torr for 30 minutes, and for ${\mu}c$-Si:H intrinsic layer, $SiH_4$ : $H_2$ = 10 : 300, at $200^{\circ}C$, 30 W, 0.5 Torr for 60 minutes, 2 cm $\times$ 2 cm size wafers were used. In consequence of comparing the results of lifetime measurement and sheet resistance relation, the laser condition set of 20 ~ 27 % of power, 150 ~ 160 kHz, 20 ~ 50 mm/s of marking speed, and $10\;{\sim}\;50 {\mu}m$ spacing with continuous wave mode of scanner lens showed the correlation between lifetime and sheet resistance as $100\;{\Omega}/sq$ and $11.8\;{\mu}s$ vs. $17\;{\Omega}/sq$ and $8.2\;{\mu}s$. Comparing to the singly deposited p-a-Si:H layer case, the additional ${\mu}c$-Si:H layer for doping resulted in no trade-offs, but showed slight improvement of both lifetime and sheet resistance, however sheet resistance might be confined by the additional intrinsic layer. This might come from the ineffective crystallization of amorphous silicon layer. For the additional layer case, lifetime and sheet resistance were measured as $84.8\;{\Omega}/sq$ and $11.09\;{\mu}s$ vs. $79.8\;{\Omega}/sq$ and $11.93\;{\mu}s$. The co-existence of $n^+$layeronthesamesurfaceandeliminating the laser damage should be taken into account for an IBC solar cell structure. Heavily doped uniform boron layer by fiber laser brings not only basic and essential conditions for the beginning step of IBC solar cell fabrication processes, but also the controllable doping concentration and depth that can be established according to the deposition conditions of layers.

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